Basic Information
Accession number
GCA_000695425.1
Release date
2014-05-22
Organism
Neisseria gonorrhoeae
Species name
Neisseria gonorrhoeae

Assembly level
Contig
Assembly name
NG-i19.05
Assembly submitter
Federal Medical and Biological Agency SRI of Physical-Chemical Medicine
Assembly Type
haploid
Genome size
2.2 Mb
GC percent
52.5
Contig count
130

Collection date
2005
Sample location
Russia: Irkutsk
Host
Homo sapiens
Isolation source
cervical
Isolate type
-
Strain
i19.05
Isolate
-
ARG List
ORF_ID Pass_Bitscore Best_Hit_Bitscore Best_Hit_ARO Best_Identities ARO Model_type SNPs_in_Best_Hit_ARO Other_SNPs Drug class Resistance mechanism AMR gene family Description
JFBA01000015.1_5 # 5920 # 6762 400.0 557.755 mtrA 98.18 ARO:3000816 protein homolog model macrolide antibiotic; penam antibiotic efflux resistance-nodulation-cell division (RND) antibiotic efflux pump MtrA is a transcriptional activator of the MtrCDE multidrug efflux pump of Neisseria gonorrhoeae.
JFBA01000017.1_10 # 12286 # 13464 760.0 785.023 macA 98.98 ARO:3000533 protein homolog model macrolide antibiotic antibiotic efflux ATP-binding cassette (ABC) antibiotic efflux pump MacA is a membrane fusion protein that forms an antibiotic efflux complex with MacB and TolC. macA corresponds to 1 locus in Pseudomonas aeruginosa PAO1 and 1 locus in Pseudomonas aeruginosa LESB58.
JFBA01000017.1_11 # 13530 # 15464 1280.0 1303.12 macB 99.69 ARO:3000535 protein homolog model macrolide antibiotic antibiotic efflux ATP-binding cassette (ABC) antibiotic efflux pump MacB is an ATP-binding cassette (ABC) transporter that exports macrolides with 14- or 15- membered lactones. It forms an antibiotic efflux complex with MacA and TolC. macB corresponds to 1 locus in Pseudomonas aeruginosa PAO1 and 1 locus in Pseudomonas aeruginosa LESB58.
JFBA01000018.1_33 # 27886 # 29040 730.0 751.125 farA 97.66 ARO:3003961 protein homolog model antibacterial free fatty acids antibiotic efflux major facilitator superfamily (MFS) antibiotic efflux pump farA is the membrane fusion protein that is part of the farAB efflux pump.
VF List
Query_id %Identity E-value Related genes VF ID Virulence factor VFcategory VFcategoryID Characteristics Description Strain
JFBA01000001.1_9 90.446 2.21E-105 pilX VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilX) type IV pilus minor pilin PilX [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000001.1_10 89.604 7.92E-122 pilK VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilK) pilin-like protein may involving in pseudopilus formation [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000001.1_11 82.132 0.0 pilJ VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilJ) pilin-like protein may involving in pseudopilus formation [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000001.1_12 88.177 1.09E-129 pilI VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilI) pilin-like protein may involving in pseudopilus formation [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000001.1_13 86.878 6.09E-147 pilH VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilH) pilin-like protein may involving in pseudopilus formation [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000001.1_15 64.324 1.47E-90 sodB VF0169 SodB Stress survival VFC0282 (sodB) superoxide dismutase [SodB (VF0169) - Stress survival (VFC0282)] [Legionella pneumophila subsp. pneumophila str. Philadelphia 1] Legionella pneumophila
JFBA01000001.1_118 96.552 6.32E-82 pilZ VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilZ) type IV pilus assembly protein PilZ [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000001.1_120 98.378 0.0 pilT2 VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilT2) twitching motility protein PilT [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000001.1_148 97.487 0.0 recN VF0457 RecN Stress survival VFC0282 (recN) DNA repair protein RecN [RecN (VF0457) - Stress survival (VFC0282)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000001.1_206 96.819 0.0 lbpA VF0047 Lbp Nutritional/Metabolic factor VFC0272 The entry site of N. meningitidis into the body is the nasopharynx, where lactoferrin predominates as the main source of iron (lbpA) lactoferrin-binding protein A [Lbp (VF0047) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000001.1_207 71.976 0.0 lbpB VF0047 Lbp Nutritional/Metabolic factor VFC0272 The entry site of N. meningitidis into the body is the nasopharynx, where lactoferrin predominates as the main source of iron (lbpB) lactoferrin-binding protein B [Lbp (VF0047) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000003.1_1 67.908 1.51E-163 porB VF0081 Porin Invasion VFC0083 N.meningitidis produces two porins, PorA and PorB, N.gonorrhoeae expresses only one porin, PorB (porB) major outer membrane protein PIB [Porin (VF0081) - Invasion (VFC0083)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000003.1_46 99.008 0.0 katA VF0454 KatA Stress survival VFC0282 (katA) catalase [KatA (VF0454) - Stress survival (VFC0282)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000004.1_7 61.429 4.17E-117 fHbp VF0452 FHbp Immune modulation VFC0258 (fHbp) factor H binding protein [FHbp (VF0452) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000004.1_54 65.289 6.76E-109 flmH VF0473 Polar flagella Motility VFC0204 Types of bacterial movement: swimming, swarming, gliding, twitching and sliding. Only swimming and swarming are correlated with the presence of flagella. Swimming is an individual endeavour, while swarming is the movement of a group of bacteria; constitutively expressed for motility in liquid environments (flmH) short chain dehydrogenase/reductase family oxidoreductase [Polar flagella (VF0473) - Motility (VFC0204)] [Aeromonas hydrophila ML09-119] Aeromonas hydrophila
JFBA01000004.1_58 93.214 0.0 lgtE VF0078 LOS Immune modulation VFC0258 Biosynthesis pathway of LOS is producing a branched oligosaccharide attached to a lipid A via two 3-deoxy-D-manno-2-octulosonic acid (KDO) molecules. The rfaC gene product adds the first heptose (Hep I) to KDO. The rfaF gene product adds the second Hep onto Hep I and is required for alpha-chain elongation. The lgtF gene product adds the first Glc of the alpha-chain. Genes lgtA, lgtB, lgtE are responsible for the synthesis of different alpha chains. lgtG is required for addition of the fist Glc of the beta chain; lgtA, lgtC, lgtG are subject to phase variation of expression mediated by homopolymeric tracts within their coding regions (lgtE) glycosyltransferase family 25 protein [LOS (VF0078) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000004.1_61 88.172 3.39E-178 lgtB VF0078 LOS Immune modulation VFC0258 Biosynthesis pathway of LOS is producing a branched oligosaccharide attached to a lipid A via two 3-deoxy-D-manno-2-octulosonic acid (KDO) molecules. The rfaC gene product adds the first heptose (Hep I) to KDO. The rfaF gene product adds the second Hep onto Hep I and is required for alpha-chain elongation. The lgtF gene product adds the first Glc of the alpha-chain. Genes lgtA, lgtB, lgtE are responsible for the synthesis of different alpha chains. lgtG is required for addition of the fist Glc of the beta chain; lgtA, lgtC, lgtG are subject to phase variation of expression mediated by homopolymeric tracts within their coding regions (lgtB) glycosyltransferase family 25 protein [LOS (VF0078) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000004.1_62 92.76 6.85E-156 lgtA VF0078 LOS Immune modulation VFC0258 Biosynthesis pathway of LOS is producing a branched oligosaccharide attached to a lipid A via two 3-deoxy-D-manno-2-octulosonic acid (KDO) molecules. The rfaC gene product adds the first heptose (Hep I) to KDO. The rfaF gene product adds the second Hep onto Hep I and is required for alpha-chain elongation. The lgtF gene product adds the first Glc of the alpha-chain. Genes lgtA, lgtB, lgtE are responsible for the synthesis of different alpha chains. lgtG is required for addition of the fist Glc of the beta chain; lgtA, lgtC, lgtG are subject to phase variation of expression mediated by homopolymeric tracts within their coding regions (lgtA) glycosyltransferase [LOS (VF0078) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000004.1_105 82.229 0.0 hpuA VF0049 HpuAB Nutritional/Metabolic factor VFC0272 Expression of HpuAB undergoes phase variation due to slip-strand mispairing of poly(G) tracts within the hpuA gene (hpuA) haemoglobin-haptoglobin-utilization protein [HpuAB (VF0049) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis Z2491] Neisseria meningitidis
JFBA01000004.1_106 96.79 0.0 hpuB VF0049 HpuAB Nutritional/Metabolic factor VFC0272 Expression of HpuAB undergoes phase variation due to slip-strand mispairing of poly(G) tracts within the hpuA gene (hpuB) haemoglobin-haptoglobin-utilization protein [HpuAB (VF0049) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis Z2491] Neisseria meningitidis
JFBA01000004.1_111 78.443 4.01E-100 luxS VF0406 AI-2 Biofilm VFC0271 AI-2 is produced and detected by a wide variety of bacteria and is presumed to facilitate interspecies communications. (luxS) S-ribosylhomocysteinase [AI-2 (VF0406) - Biofilm (VFC0271)] [Vibrio cholerae O1 biovar El Tor str. N16961] Vibrio cholerae
JFBA01000004.1_119 71.863 0.0 htpB VF0159 Hsp60 Adherence VFC0001 (htpB) Hsp60, 60K heat shock protein HtpB [Hsp60 (VF0159) - Adherence (VFC0001)] [Legionella pneumophila subsp. pneumophila str. Philadelphia 1] Legionella pneumophila
JFBA01000005.1_25 92.068 0.0 pilQ VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilQ) type IV pilus secretin protein PilQ [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000005.1_26 98.343 4.29E-134 pilP VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilP) type IV pilus biogenesis protein PilP [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000005.1_27 99.07 3.93E-156 pilO VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilO) type IV pilus inner membrane platform protein PilO [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000005.1_28 97.487 3.4E-143 pilN VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilN) type IV pilus inner membrane platform protein PilN [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000005.1_29 96.496 0.0 pilM VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilM) type IV pilus inner membrane platform protein PilM [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000006.1_36 95.631 0.0 mtrC VF0451 MtrCDE Antimicrobial activity/Competitive advantage VFC0325 Resistance/nodulation/division (RND)-type efflux pump; regulated by two transcriptional regulators: a repressor MtrR and an activator MtrA (mtrC) membrane fusion protein MtrC [MtrCDE (VF0451) - Antimicrobial activity/Competitive advantage (VFC0325)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000006.1_37 97.751 0.0 mtrD VF0451 MtrCDE Antimicrobial activity/Competitive advantage VFC0325 Resistance/nodulation/division (RND)-type efflux pump; regulated by two transcriptional regulators: a repressor MtrR and an activator MtrA (mtrD) multiple transferable resistance system protein MtrD [MtrCDE (VF0451) - Antimicrobial activity/Competitive advantage (VFC0325)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000006.1_38 96.574 0.0 mtrE VF0451 MtrCDE Antimicrobial activity/Competitive advantage VFC0325 Resistance/nodulation/division (RND)-type efflux pump; regulated by two transcriptional regulators: a repressor MtrR and an activator MtrA (mtrE) multidrug efflux pump channel protein MtrE [MtrCDE (VF0451) - Antimicrobial activity/Competitive advantage (VFC0325)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000006.1_47 96.273 1.91E-113 rfaK VF0078 LOS Immune modulation VFC0258 Biosynthesis pathway of LOS is producing a branched oligosaccharide attached to a lipid A via two 3-deoxy-D-manno-2-octulosonic acid (KDO) molecules. The rfaC gene product adds the first heptose (Hep I) to KDO. The rfaF gene product adds the second Hep onto Hep I and is required for alpha-chain elongation. The lgtF gene product adds the first Glc of the alpha-chain. Genes lgtA, lgtB, lgtE are responsible for the synthesis of different alpha chains. lgtG is required for addition of the fist Glc of the beta chain; lgtA, lgtC, lgtG are subject to phase variation of expression mediated by homopolymeric tracts within their coding regions (rfaK) glycosyltransferase family 4 protein [LOS (VF0078) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000006.1_48 96.667 3.43E-129 rfaK VF0078 LOS Immune modulation VFC0258 Biosynthesis pathway of LOS is producing a branched oligosaccharide attached to a lipid A via two 3-deoxy-D-manno-2-octulosonic acid (KDO) molecules. The rfaC gene product adds the first heptose (Hep I) to KDO. The rfaF gene product adds the second Hep onto Hep I and is required for alpha-chain elongation. The lgtF gene product adds the first Glc of the alpha-chain. Genes lgtA, lgtB, lgtE are responsible for the synthesis of different alpha chains. lgtG is required for addition of the fist Glc of the beta chain; lgtA, lgtC, lgtG are subject to phase variation of expression mediated by homopolymeric tracts within their coding regions (rfaK) glycosyltransferase family 4 protein [LOS (VF0078) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000006.1_49 96.825 0.0 lgtF VF0078 LOS Immune modulation VFC0258 Biosynthesis pathway of LOS is producing a branched oligosaccharide attached to a lipid A via two 3-deoxy-D-manno-2-octulosonic acid (KDO) molecules. The rfaC gene product adds the first heptose (Hep I) to KDO. The rfaF gene product adds the second Hep onto Hep I and is required for alpha-chain elongation. The lgtF gene product adds the first Glc of the alpha-chain. Genes lgtA, lgtB, lgtE are responsible for the synthesis of different alpha chains. lgtG is required for addition of the fist Glc of the beta chain; lgtA, lgtC, lgtG are subject to phase variation of expression mediated by homopolymeric tracts within their coding regions (lgtF) glycosyltransferase family 2 protein [LOS (VF0078) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000010.1_1 62.518 0.0 pilC VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilC) pilus assembly protein [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000010.1_3 96.927 0.0 kdtA/waaA VF0078 LOS Immune modulation VFC0258 Biosynthesis pathway of LOS is producing a branched oligosaccharide attached to a lipid A via two 3-deoxy-D-manno-2-octulosonic acid (KDO) molecules. The rfaC gene product adds the first heptose (Hep I) to KDO. The rfaF gene product adds the second Hep onto Hep I and is required for alpha-chain elongation. The lgtF gene product adds the first Glc of the alpha-chain. Genes lgtA, lgtB, lgtE are responsible for the synthesis of different alpha chains. lgtG is required for addition of the fist Glc of the beta chain; lgtA, lgtC, lgtG are subject to phase variation of expression mediated by homopolymeric tracts within their coding regions (kdtA/waaA) lipid IV(A) 3-deoxy-D-manno-octulosonic acid transferase [LOS (VF0078) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000010.1_21 89.441 0.0 rfaC VF0078 LOS Immune modulation VFC0258 Biosynthesis pathway of LOS is producing a branched oligosaccharide attached to a lipid A via two 3-deoxy-D-manno-2-octulosonic acid (KDO) molecules. The rfaC gene product adds the first heptose (Hep I) to KDO. The rfaF gene product adds the second Hep onto Hep I and is required for alpha-chain elongation. The lgtF gene product adds the first Glc of the alpha-chain. Genes lgtA, lgtB, lgtE are responsible for the synthesis of different alpha chains. lgtG is required for addition of the fist Glc of the beta chain; lgtA, lgtC, lgtG are subject to phase variation of expression mediated by homopolymeric tracts within their coding regions (rfaC) lipopolysaccharide heptosyltransferase I [LOS (VF0078) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000011.1_30 96.429 0.0 rfaF VF0078 LOS Immune modulation VFC0258 Biosynthesis pathway of LOS is producing a branched oligosaccharide attached to a lipid A via two 3-deoxy-D-manno-2-octulosonic acid (KDO) molecules. The rfaC gene product adds the first heptose (Hep I) to KDO. The rfaF gene product adds the second Hep onto Hep I and is required for alpha-chain elongation. The lgtF gene product adds the first Glc of the alpha-chain. Genes lgtA, lgtB, lgtE are responsible for the synthesis of different alpha chains. lgtG is required for addition of the fist Glc of the beta chain; lgtA, lgtC, lgtG are subject to phase variation of expression mediated by homopolymeric tracts within their coding regions (rfaF) lipopolysaccharide heptosyltransferase II [LOS (VF0078) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000012.1_32 94.536 0.0 tbpA VF0046 Tbp Nutritional/Metabolic factor VFC0272 The tbp locus is a bicistronic operon consisting of tbpA and tbpB. Unlike the case for many other genes of Neisseria, there is no phase variation of the transferrin receptor (tbpA) transferrin-binding protein A [Tbp (VF0046) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000012.1_33 68.144 0.0 tbpB VF0046 Tbp Nutritional/Metabolic factor VFC0272 The tbp locus is a bicistronic operon consisting of tbpA and tbpB. Unlike the case for many other genes of Neisseria, there is no phase variation of the transferrin receptor (tbpB) transferrin-binding protein B [Tbp (VF0046) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000012.1_49 76.86 5.73E-64 pilS VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilS) pilin [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000014.1_20 94.286 1.15E-100 nspA VF0453 NspA Immune modulation VFC0258 (nspA) neisserial surface protein A [NspA (VF0453) - Immune modulation (VFC0258)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000014.1_38 99.094 0.0 fbpA VF0272 FbpABC Nutritional/Metabolic factor VFC0272 (fbpA) iron(III) ABC transporter, periplasmic binding protein [FbpABC (VF0272) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000014.1_39 99.208 0.0 fbpB VF0272 FbpABC Nutritional/Metabolic factor VFC0272 (fbpB) iron(III) ABC transporter, permease protein [FbpABC (VF0272) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000014.1_40 97.159 0.0 fbpC VF0272 FbpABC Nutritional/Metabolic factor VFC0272 (fbpC) iron(III) ABC transporter, ATP-binding protein [FbpABC (VF0272) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000017.1_9 85.271 1.48E-81 pilV VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilV) type IV pilus minor pilin PilV [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000018.1_19 95.882 1.55E-117 pilG VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilG) pilus assembly protein PilG [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000018.1_20 99.087 7.21E-157 pilG VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilG) pilus assembly protein PilG [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000018.1_21 97.544 0.0 pilD VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilD) type IV pilus prepilin peptidase [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000018.1_24 99.462 0.0 pilF VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilF) type IV pilus assembly ATPase protein [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000018.1_32 95.652 0.0 farB VF0450 FarAB Antimicrobial activity/Competitive advantage VFC0325 The far efflux system is composed of the FarA membrane fusion protein, the FarB cytoplasmic membrane transporter protein, and the MtrE protein as the outer membrane channel to export antibacterial fatty acids from inside the cell; belongs to Major Facilitator Superfamily (MFS) of efflux pumps and uses the proton motive force as an energy source for export of toxic agents (farB) fatty acid efflux system protein FarB [FarAB (VF0450) - Antimicrobial activity/Competitive advantage (VFC0325)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000018.1_33 97.656 0.0 farA VF0450 FarAB Antimicrobial activity/Competitive advantage VFC0325 The far efflux system is composed of the FarA membrane fusion protein, the FarB cytoplasmic membrane transporter protein, and the MtrE protein as the outer membrane channel to export antibacterial fatty acids from inside the cell; belongs to Major Facilitator Superfamily (MFS) of efflux pumps and uses the proton motive force as an energy source for export of toxic agents (farA) fatty acid efflux system protein FarA [FarAB (VF0450) - Antimicrobial activity/Competitive advantage (VFC0325)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000020.1_4 64.138 9.64E-141 wbtL VF0542 LPS Immune modulation VFC0258 The structure of Francisella spp. lipid A is unique in that it is modified by various carbohydrates that greatly reduce TLR4 activation and allow for immune evasion (wbtL) glucose-1-phosphate thymidylyltransferase [LPS (VF0542) - Immune modulation (VFC0258)] [Francisella tularensis subsp. tularensis SCHU S4] Francisella tularensis
JFBA01000020.1_5 64.97 5.22E-171 rffG VF0044 LOS Immune modulation VFC0258 Lic1A (phosphorylcholine (ChoP) kinase) 5'-CAAT-3' within the 5'-end of its coding sequence; lic2A, also referred to as lexA, variation in the number of 5'-CAAT-3' repeats has been shown to correlate directly with phase variation of the Gal-alpha(1-4)beta-Gal LPS structure; But lgtC (glycosyltransferase), another phase-variable gene, ultimately dictates whether this structure is synthesized. lic3A encode a sialyl transferase which directs the substitution of LPS with sialic acid. (rffG) dTDP-glucose 46-dehydratase [LOS (VF0044) - Immune modulation (VFC0258)] [Haemophilus influenzae Rd KW20] Haemophilus influenzae
JFBA01000021.1_8 68.727 6.09E-143 kdsA VF0044 LOS Immune modulation VFC0258 Lic1A (phosphorylcholine (ChoP) kinase) 5'-CAAT-3' within the 5'-end of its coding sequence; lic2A, also referred to as lexA, variation in the number of 5'-CAAT-3' repeats has been shown to correlate directly with phase variation of the Gal-alpha(1-4)beta-Gal LPS structure; But lgtC (glycosyltransferase), another phase-variable gene, ultimately dictates whether this structure is synthesized. lic3A encode a sialyl transferase which directs the substitution of LPS with sialic acid. (kdsA) 2-dehydro-3-deoxyphosphooctonate aldolase [LOS (VF0044) - Immune modulation (VFC0258)] [Haemophilus influenzae Rd KW20] Haemophilus influenzae
JFBA01000021.1_34 99.209 0.0 pilW VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilW) type IV fimbrial biogenesis and twitching motility protein PilW [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000021.1_36 62.626 2.65E-94 clpP VF0074 ClpP Stress survival VFC0282 21.6 kDa protein belongs to a family of proteases highly conserved in prokaryotes and eukaryotes (clpP) ATP-dependent Clp protease proteolytic subunit [ClpP (VF0074) - Stress survival (VFC0282)] [Listeria monocytogenes EGD-e] Listeria monocytogenes
JFBA01000024.1_7 60.726 4.96E-129 clpC VF0072 ClpC Stress survival VFC0282 27-kDa stress protein belongs to the Hsp100/Clp family; Regulation of Clp protease expression is mediated by CtsR, the product of the first gene in the ClpC operon (clpC) endopeptidase Clp ATP-binding chain C [ClpC (VF0072) - Stress survival (VFC0282)] [Listeria monocytogenes EGD-e] Listeria monocytogenes
JFBA01000026.1_1 68.333 4.08E-55 opa VF0076 Opa Invasion VFC0083 Opa proteins were originally identified because their expression changes the color and opacity of colonies. The effect may be due to an increased interbacterial aggregation that results from the lectin-like ability of Opa proteins to bind to LOS on adjacent bacteria; A single gonococcal strain can harbor up to 12 opa genes, meningococci usually encode 3 to 4 Opa proteins; all opa genes sequenced to date contain 5' tandem repeats [CTCTT]n that cause high-frequency phase variable expression; grouped into two major classes according to the binding specificity for human surface receptors: the OpaHS-type (heparansulphate proteoglycan (HSPG) and OpaCEA-type (carcinoembryonic antigen (CEA) or related molecules) (opa) outer membrane beta-barrel protein [Opa (VF0076) - Invasion (VFC0083)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000028.1_11 77.778 5.62E-33 porA VF0081 Porin Invasion VFC0083 N.meningitidis produces two porins, PorA and PorB, N.gonorrhoeae expresses only one porin, PorB (porA) porin PorA [Porin (VF0081) - Invasion (VFC0083)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000028.1_12 84.74 0.0 porA VF0081 Porin Invasion VFC0083 N.meningitidis produces two porins, PorA and PorB, N.gonorrhoeae expresses only one porin, PorB (porA) porin PorA [Porin (VF0081) - Invasion (VFC0083)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000032.1_6 95.724 0.0 mntC VF0455 MntABC Stress survival VFC0282 An ATP binding cassette (ABC) permease containing a periplasmic metal binding receptor protein (MBR), MntC (mntC) periplasmic binding protein MntC [MntABC (VF0455) - Stress survival (VFC0282)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000032.1_7 93.814 0.0 mntB VF0455 MntABC Stress survival VFC0282 An ATP binding cassette (ABC) permease containing a periplasmic metal binding receptor protein (MBR), MntC (mntB) Manganese transport system membrane protein MntB [MntABC (VF0455) - Stress survival (VFC0282)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000032.1_8 97.51 4.5E-180 mntA VF0455 MntABC Stress survival VFC0282 An ATP binding cassette (ABC) permease containing a periplasmic metal binding receptor protein (MBR), MntC (mntA) ABC transporter ATP-binding protein MntA [MntABC (VF0455) - Stress survival (VFC0282)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000033.1_16 97.893 0.0 msrA/B(pilB VF0456 MsrAB Stress survival VFC0282 Methionine sulfoxide reductases (Msr) are enzymes that catalyze the reduction of free and protein-bound methionine sulfoxide (MetSO) back to Met. Two structurally unrelated classes of Msrs have been described so far. MsrAs are stereo specific toward the S isomer on the sulfur of the sulfoxide function, whereas MsrBs are specific toward the R isomer (msrA/B(pilB)) trifunctional thioredoxin/methionine sulfoxide reductase A/B protein [MsrAB (VF0456) - Stress survival (VFC0282)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000035.1_1 73.585 1.95E-51 pilS VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilS) pilin [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000035.1_5 68.421 0.0 lpt6 VF0044 LOS Immune modulation VFC0258 Lic1A (phosphorylcholine (ChoP) kinase) 5'-CAAT-3' within the 5'-end of its coding sequence; lic2A, also referred to as lexA, variation in the number of 5'-CAAT-3' repeats has been shown to correlate directly with phase variation of the Gal-alpha(1-4)beta-Gal LPS structure; But lgtC (glycosyltransferase), another phase-variable gene, ultimately dictates whether this structure is synthesized. lic3A encode a sialyl transferase which directs the substitution of LPS with sialic acid. (lpt6) phosphoethanolamine (Petn) transferase [LOS (VF0044) - Immune modulation (VFC0258)] [Haemophilus influenzae Rd KW20] Haemophilus influenzae
JFBA01000046.1_1 93.31 0.0 hmbR VF0048 HmbR Nutritional/Metabolic factor VFC0272 The gene encoding the hemoglobin receptor, hmbR, is located downstream of a gene involved in the catabolism of heme, hemO; expression of HmbR undergoes phase variation due to slip-strand mispairing of poly(G) tracts within the hmbR gene. The advantage associated with phase-varying surface proteins is evasion of the host immune response (hmbR) hemoglobin receptor [HmbR (VF0048) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000046.1_2 90.429 0.0 hmbR VF0048 HmbR Nutritional/Metabolic factor VFC0272 The gene encoding the hemoglobin receptor, hmbR, is located downstream of a gene involved in the catabolism of heme, hemO; expression of HmbR undergoes phase variation due to slip-strand mispairing of poly(G) tracts within the hmbR gene. The advantage associated with phase-varying surface proteins is evasion of the host immune response (hmbR) hemoglobin receptor [HmbR (VF0048) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000046.1_3 95.69 3.12E-73 hmbR VF0048 HmbR Nutritional/Metabolic factor VFC0272 The gene encoding the hemoglobin receptor, hmbR, is located downstream of a gene involved in the catabolism of heme, hemO; expression of HmbR undergoes phase variation due to slip-strand mispairing of poly(G) tracts within the hmbR gene. The advantage associated with phase-varying surface proteins is evasion of the host immune response (hmbR) hemoglobin receptor [HmbR (VF0048) - Nutritional/Metabolic factor (VFC0272)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000049.1_1 81.944 3.23E-80 pilC VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilC) pilus assembly protein [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000049.1_4 98.529 0.0 pilU VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilU) twitching motility protein PilU [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000049.1_5 99.135 0.0 pilT VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilT) twitching motility protein PilT [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000063.1_4 78.322 3.22E-74 pilC VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilC) pilus assembly protein [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000071.1_1 78.723 2.6E-75 pilS VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilS) pilin [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000085.1_2 79.545 5.46E-22 opa VF0076 Opa Invasion VFC0083 Opa proteins were originally identified because their expression changes the color and opacity of colonies. The effect may be due to an increased interbacterial aggregation that results from the lectin-like ability of Opa proteins to bind to LOS on adjacent bacteria; A single gonococcal strain can harbor up to 12 opa genes, meningococci usually encode 3 to 4 Opa proteins; all opa genes sequenced to date contain 5' tandem repeats [CTCTT]n that cause high-frequency phase variable expression; grouped into two major classes according to the binding specificity for human surface receptors: the OpaHS-type (heparansulphate proteoglycan (HSPG) and OpaCEA-type (carcinoembryonic antigen (CEA) or related molecules) (opa) outer membrane beta-barrel protein [Opa (VF0076) - Invasion (VFC0083)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000086.1_1 79.644 0.0 tufA VF0460 EF-Tu Adherence VFC0001 (tufA) elongation factor Tu [EF-Tu (VF0460) - Adherence (VFC0001)] [Francisella tularensis subsp. tularensis SCHU S4] Francisella tularensis
JFBA01000091.1_1 95.588 2.95E-43 pilE VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilE) Type IV pilus major pilin subunit PilE [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000091.1_2 75.248 1.38E-43 pilS VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilS) pilin [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000095.1_1 78.723 3.38E-78 pilS VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilS) pilin [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000100.1_1 76.136 1.07E-75 pilC VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilC) pilus assembly protein [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000109.1_1 70.588 1.98E-19 pilS VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilS) pilin [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000109.1_2 86.957 7.39E-22 pilS VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilS) pilin [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000110.1_1 67.241 7.57E-46 pilS VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilS) pilin [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000112.1_1 76.0 4.9E-22 pilS VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilS) pilin [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000112.1_2 65.517 1.83E-6 pilE VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilE) Type IV pilus major pilin subunit PilE [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000123.1_1 91.176 3.54E-17 opa VF0076 Opa Invasion VFC0083 Opa proteins were originally identified because their expression changes the color and opacity of colonies. The effect may be due to an increased interbacterial aggregation that results from the lectin-like ability of Opa proteins to bind to LOS on adjacent bacteria; A single gonococcal strain can harbor up to 12 opa genes, meningococci usually encode 3 to 4 Opa proteins; all opa genes sequenced to date contain 5' tandem repeats [CTCTT]n that cause high-frequency phase variable expression; grouped into two major classes according to the binding specificity for human surface receptors: the OpaHS-type (heparansulphate proteoglycan (HSPG) and OpaCEA-type (carcinoembryonic antigen (CEA) or related molecules) (opa) outer membrane beta-barrel protein [Opa (VF0076) - Invasion (VFC0083)] [Neisseria meningitidis MC58] Neisseria meningitidis
JFBA01000127.1_1 60.345 1.65E-16 pilE VF0075 Type IV pili Adherence VFC0001 One or two different loci are used for the expression of the major pilin encoding gene (pilE), whereas various silent genes (pilS) are spread throughout the chromosome. Recombination between pilS and pilE copies leads to changes in the pilin coding sequence and subsequently to the expression of antigenically different pili. Mutations affecting the length of the homopolymeric G-run located in the region encoding the SP of PilC results in on/off changes in piliation (pilE) Type IV pilus major pilin subunit PilE [Type IV pili (VF0075) - Adherence (VFC0001)] [Neisseria meningitidis MC58] Neisseria meningitidis