KEGG   PATHWAY: eec02024
Entry
eec02024                    Pathway                                
Name
Quorum sensing - Enterobacter ludwigii EcWSU1
Description
Quorum sensing (QS) is a regulatory system that allows bacteria to share information about cell density and adjust gene expression accordingly. All QS bacteria produce and release chemical signal molecules called autoinducers (AIs) that increase in concentration as a function of cell density. The most commonly studied AIs belong to one of the following three categories: acylated homoserine lactones, also referred to as AI-1, used by Gram-negative bacteria; peptide signals, used by Gram-positive bacteria; and AI-2, used by both Gram-negative and Gram-positive bacteria. QS can be divided into at least 4 steps: production of AIs by the bacterial cell; release of AIs, either actively or passively, into the surrounding environment; recognition of AIs by specific receptors; and leading to changes in gene regulation once they exceed a threshold concentration. The processes controlled by QS include virulence, competence, conjugation, antibiotic production, motility, sporulation, and biofilm formation.
Class
Cellular Processes; Cellular community - prokaryotes
Pathway map
eec02024  Quorum sensing
eec02024

Other DBs
GO: 0009372
Organism
Enterobacter ludwigii EcWSU1 [GN:eec]
Gene
EcWSU1_03502  luxS; S-ribosylhomocysteine lyase [KO:K07173] [EC:4.4.1.21]
EcWSU1_00372  hfq; Hfq [KO:K03666]
EcWSU1_02518  trpE; Anthranilate synthase component 1 [KO:K01657] [EC:4.1.3.27]
EcWSU1_01836  aroH; Phospho-2-dehydro-3-deoxyheptonate aldolase, Trp-sensitive [KO:K01626] [EC:2.5.1.54]
EcWSU1_01297  aroG; Phospho-2-dehydro-3-deoxyheptonate aldolase, Phe-sensitive [KO:K01626] [EC:2.5.1.54]
EcWSU1_03410  aroF; Phospho-2-dehydro-3-deoxyheptonate aldolase, Tyr-sensitive [KO:K01626] [EC:2.5.1.54]
EcWSU1_03807  qseC; Sensor protein qseC [KO:K07645] [EC:2.7.13.3]
EcWSU1_03806  qseB; Transcriptional regulatory protein qseB [KO:K07666]
EcWSU1_03365  yfhK; Putative sensor-like histidine kinase yfhK [KO:K07711] [EC:2.7.13.3]
EcWSU1_03363  yfhA; YfhA [KO:K07715]
EcWSU1_02824  flhD; Transcriptional activator FlhD [KO:K02403]
EcWSU1_02823  flhC; Flagellar transcriptional activator flhC [KO:K02402]
EcWSU1_01255  kdpE; KDP operon transcriptional regulatory protein kdpE [KO:K07667]
EcWSU1_02857  sdiA; Regulatory protein SdiA [KO:K07782]
EcWSU1_03895  lsrB; Autoinducer 2-binding protein lsrB [KO:K10555]
EcWSU1_03897  lsrC; Autoinducer 2 import system permease protein lsrC [KO:K10556]
EcWSU1_03896  lsrD; Autoinducer 2 import system permease protein lsrD [KO:K10557]
EcWSU1_03898  lsrA; Autoinducer 2 import ATP-binding protein LsrA [KO:K10558]
EcWSU1_03900  lsrK; Autoinducer 2 kinase LsrK [KO:K11216] [EC:2.7.1.189]
EcWSU1_03899  lsrR; Transcriptional regulator lsrR [KO:K11531]
EcWSU1_03894  lsrF; LsrF [KO:K08321] [EC:2.3.1.245]
EcWSU1_03893  lsrG; Autoinducer 2-degrading protein lsrG [KO:K11530] [EC:5.3.1.32]
EcWSU1_03857  rhiA; Protein rhiA [KO:K20268]
EcWSU1_02402  ydcS; Putative ABC transporter periplasmic-binding protein ydcS [KO:K02055]
EcWSU1_02399  ydcV; Inner membrane ABC transporter permease protein ydcV [KO:K02053]
EcWSU1_02400  ydcU; Inner membrane ABC transporter permease protein ydcU [KO:K02054]
EcWSU1_02401  ydcT; YdcT [KO:K02052]
EcWSU1_02844  livJ; Leu/Ile/Val-binding protein-like protein 1 [KO:K01999]
EcWSU1_04236  livK; Leucine-specific-binding protein [KO:K01999]
EcWSU1_04239  livJ; Leu/Ile/Val-binding protein [KO:K01999]
EcWSU1_02845  livH; High-affinity branched-chain amino acid transport system permease protein livH [KO:K01997]
EcWSU1_04234  livH; High-affinity branched-chain amino acid transport system permease protein livH [KO:K01997]
EcWSU1_02846  braE; High-affinity branched-chain amino acid transport system permease protein BraE [KO:K01998]
EcWSU1_04233  livM; High-affinity branched-chain amino acid transport system permease protein livM [KO:K01998]
EcWSU1_02847  braF; High-affinity branched-chain amino acid transport ATP-binding protein BraF [KO:K01995]
EcWSU1_04232  livG; High-affinity branched-chain amino acid transport ATP-binding protein LivG [KO:K01995]
EcWSU1_02848  livF; High-affinity branched-chain amino acid transport ATP-binding protein LivF [KO:K01996]
EcWSU1_04231  livF; High-affinity branched-chain amino acid transport ATP-binding protein LivF [KO:K01996]
EcWSU1_02559  attM; N-acyl homoserine lactonase AttM [KO:K13075] [EC:3.1.1.81]
EcWSU1_02892  rcsA; Colanic acid capsular biosynthesis activation protein A [KO:K07781]
EcWSU1_02495  paaF; Enoyl-CoA Hydratase [KO:K13816]
EcWSU1_02494  gmr; Cyclic di-GMP phosphodiesterase Gmr [KO:K14051] [EC:3.1.4.52]
EcWSU1_02111  hypothetical protein [KO:K20276]
EcWSU1_03455  hypothetical protein [KO:K20276]
EcWSU1_02730  fadD; Long-chain-fatty-acid--CoA ligase [KO:K01897] [EC:6.2.1.3]
EcWSU1_04156  crp; Catabolite gene activator [KO:K10914]
EcWSU1_00264  zur; Zinc uptake regulation protein [KO:K09823]
EcWSU1_01733  gmuG; Mannan endo-1,4-beta-mannosidase [KO:K01218] [EC:3.2.1.78]
EcWSU1_02504  ribA; GTP cyclohydrolase-2 [KO:K01497] [EC:3.5.4.25]
EcWSU1_00936  ribD; Riboflavin biosynthesis protein RibD [KO:K11752] [EC:3.5.4.26 1.1.1.193]
EcWSU1_02092  hypothetical protein [KO:K09936]
EcWSU1_02093  hypothetical protein [KO:K09936]
EcWSU1_02390  ydcZ; Inner membrane protein ydcZ [KO:K09936]
EcWSU1_02102  oprM; Outer membrane protein oprM [KO:K18139]
EcWSU1_00059  oprM; Outer membrane protein oprM [KO:K18139]
EcWSU1_02586  oppA; Periplasmic oligopeptide-binding protein [KO:K15580]
EcWSU1_01555  oppA; Periplasmic oligopeptide-binding protein [KO:K15580]
EcWSU1_02453  mppA; Periplasmic murein peptide-binding protein [KO:K15580]
EcWSU1_02585  oppB; Oligopeptide transport system permease protein oppB [KO:K15581]
EcWSU1_02584  oppC; Oligopeptide transport system permease protein oppC [KO:K15582]
EcWSU1_02583  oppD; Oligopeptide transport ATP-binding protein OppD [KO:K15583]
EcWSU1_02582  oppF; Oligopeptide transport ATP-binding protein OppF [KO:K10823]
EcWSU1_02292  ddpA; putative D,D-dipeptide-binding periplasmic protein ddpA [KO:K02035]
EcWSU1_00830  gsiB; Glutathione-binding protein gsiB [KO:K02035]
EcWSU1_02293  ddpB; putative D,D-dipeptide transport system permease protein ddpB [KO:K02033]
EcWSU1_00831  yliC; Putative peptide transport system permease protein [KO:K02033]
EcWSU1_02294  ddpC; putative D,D-dipeptide transport system permease protein ddpC [KO:K02034]
EcWSU1_00832  dppC; Dipeptide transport system permease protein dppC [KO:K02034]
EcWSU1_02295  ddpD; putative D,D-dipeptide transport ATP-binding protein DdpD [KO:K02031]
EcWSU1_00828  appD; Oligopeptide transport ATP-binding protein AppD [KO:K02031]
EcWSU1_02296  ddpF; putative D,D-dipeptide transport ATP-binding protein DdpF [KO:K02032]
EcWSU1_00829  appF; Oligopeptide transport ATP-binding protein AppF [KO:K02032]
EcWSU1_04545  oxaA; Inner membrane protein oxaA [KO:K03217]
EcWSU1_00205  secE; Preprotein translocase subunit secE [KO:K03073]
EcWSU1_03976  secG; Protein-export membrane protein secG [KO:K03075]
EcWSU1_04101  secY; Preprotein translocase subunit secY [KO:K03076]
EcWSU1_00928  yajC; UPF0092 membrane protein yajC [KO:K03210]
EcWSU1_00712  secA; Protein translocase subunit secA [KO:K03070] [EC:7.4.2.8]
EcWSU1_04244  ftsY; Cell division protein ftsY [KO:K03110]
EcWSU1_00130  secB; Protein-export protein secB [KO:K03071]
EcWSU1_03421  ffh; Signal recognition particle protein [KO:K03106] [EC:3.6.5.4]
Compound
C00007  Oxygen
C00009  Orthophosphate
C00059  Sulfate
C00232  Succinate semialdehyde
C00334  4-Aminobutanoate
C00547  L-Noradrenaline
C00788  L-Adrenaline
C01019  L-Fucose
C11837  N-Butyryl-L-homoserine lactone
C11841  N-(3-Oxooctanoyl)homoserine lactone
C11844  N-Heptanoylhomoserine lactone
C11845  N-(3-Hydroxy-7-cis-tetradecenoyl)homoserine lactone
C11848  2-Heptyl-3-hydroxy-quinolone
C16421  AI-2
C16463  3',5'-Cyclic diGMP
C16640  CAI-1
C18049  N-Acyl-L-homoserine lactone
C18206  cis-11-Methyl-2-dodecenoic acid
C20643  2-Heptyl-4(1H)-quinolone
C20677  N-(4-Coumaroyl)-L-homoserine lactone
C20959  (4S)-4-Hydroxy-5-phosphooxypentane-2,3-dione
C21195  N-(3-Hydroxybutanoyl)-L-homoserine lactone
C21197  N-Hexanoyl-L-homoserine lactone
C21198  N-(3-Oxohexanoyl)-L-homoserine lactone
C21199  N-Octanoyl-L-homoserine lactone
C21200  N-3-Hydroxyoctanoyl-L-homoserine lactone
C21201  N-3-Oxo-dodecanoyl-L-homoserine lactone
C21202  cis-2-Dodecenoic acid
C21220  AIP-1
C21221  CSP
C21222  CSP
C21223  Blp
C21224  SHP2
C21225  SHP3
C21226  cCF10
C21227  iCF10
C21228  cAD1
C21229  iAD1
C21230  ComX pheromone
C21231  PhrA pentapeptide
C21232  PhrC pentapeptide
C21233  PhrE pentapeptide
C21234  PhrF pentapeptide
C21235  PhrG pentapeptide
C21236  PhrH pentapeptide
C21237  PhrK pentapeptide
C21238  NprX peptide
C21239  PapR peptide
C21241  AIP-2
C21242  AIP-3
C21243  AIP-4
C21244  AgrD peptide
C21245  AgrD1 peptide
C21246  GBAP
C21382  R-THMF
Reference
  Authors
Pereira CS, Thompson JA, Xavier KB
  Title
AI-2-mediated signalling in bacteria.
  Journal
FEMS Microbiol Rev 37:156-81 (2013)
DOI:10.1111/j.1574-6976.2012.00345.x
Reference
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Verma SC, Miyashiro T
  Title
Quorum sensing in the squid-Vibrio symbiosis.
  Journal
Int J Mol Sci 14:16386-401 (2013)
DOI:10.3390/ijms140816386
Reference
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Norsworthy AN, Visick KL
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Gimme shelter: how Vibrio fischeri successfully navigates an animal's multiple environments.
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Front Microbiol 4:356 (2013)
DOI:10.3389/fmicb.2013.00356
Reference
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Papaioannou E, Utari PD, Quax WJ
  Title
Choosing an appropriate infection model to study quorum sensing inhibition in Pseudomonas infections.
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Int J Mol Sci 14:19309-40 (2013)
DOI:10.3390/ijms140919309
Reference
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Heeb S, Fletcher MP, Chhabra SR, Diggle SP, Williams P, Camara M
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Quinolones: from antibiotics to autoinducers.
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FEMS Microbiol Rev 35:247-74 (2011)
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The formation of biofilms by Pseudomonas aeruginosa: a review of the natural and synthetic compounds interfering with control mechanisms.
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Biomed Res Int 2015:759348 (2015)
DOI:10.1155/2015/759348
Reference
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Whiteley M, Greenberg EP
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Promoter specificity elements in Pseudomonas aeruginosa quorum-sensing-controlled genes.
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J Bacteriol 183:5529-34 (2001)
DOI:10.1128/JB.183.19.5529-5534.2001
Reference
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Phenazine-1-carboxamide production in the biocontrol strain Pseudomonas chlororaphis PCL1391 is regulated by multiple factors secreted into the growth medium.
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Mol Plant Microbe Interact 14:969-79 (2001)
DOI:10.1094/MPMI.2001.14.8.969
Reference
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Hughes DT, Clarke MB, Yamamoto K, Rasko DA, Sperandio V
  Title
The QseC adrenergic signaling cascade in Enterohemorrhagic E. coli (EHEC).
  Journal
PLoS Pathog 5:e1000553 (2009)
DOI:10.1371/journal.ppat.1000553
Reference
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Njoroge J, Sperandio V
  Title
Enterohemorrhagic Escherichia coli virulence regulation by two bacterial adrenergic kinases, QseC and QseE.
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Infect Immun 80:688-703 (2012)
DOI:10.1128/IAI.05921-11
Reference
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Pacheco AR, Curtis MM, Ritchie JM, Munera D, Waldor MK, Moreira CG, Sperandio V
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Fucose sensing regulates bacterial intestinal colonization.
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Nature 492:113-7 (2012)
DOI:10.1038/nature11623
Reference
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Hirakawa H, Harwood CS, Pechter KB, Schaefer AL, Greenberg EP
  Title
Antisense RNA that affects Rhodopseudomonas palustris quorum-sensing signal receptor expression.
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Proc Natl Acad Sci U S A 109:12141-6 (2012)
DOI:10.1073/pnas.1200243109
Reference
  Authors
Danino VE, Wilkinson A, Edwards A, Downie JA
  Title
Recipient-induced transfer of the symbiotic plasmid pRL1JI in Rhizobium leguminosarum bv. viciae is regulated by a quorum-sensing relay.
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Mol Microbiol 50:511-25 (2003)
DOI:10.1046/j.1365-2958.2003.03699.x
Reference
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Quorum-sensing in Rhizobium.
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Antonie Van Leeuwenhoek 81:397-407 (2002)
DOI:10.1023/A:1020501104051
Reference
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Rodelas B, Lithgow JK, Wisniewski-Dye F, Hardman A, Wilkinson A, Economou A, Williams P, Downie JA
  Title
Analysis of quorum-sensing-dependent control of rhizosphere-expressed (rhi) genes in Rhizobium leguminosarum bv. viciae.
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J Bacteriol 181:3816-23 (1999)
DOI:10.1128/JB.181.12.3816-3823.1999
Reference
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Lang J, Faure D
  Title
Functions and regulation of quorum-sensing in Agrobacterium tumefaciens.
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Front Plant Sci 5:14 (2014)
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Reference
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In planta fitness-cost of the Atu4232-regulon encoding for a selective GABA-binding sensor in Agrobacterium.
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Commun Integr Biol 6:e23692 (2013)
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Reference
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Barnard AM, Salmond GP
  Title
Quorum sensing in Erwinia species.
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Anal Bioanal Chem 387:415-23 (2007)
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Reference
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Barnard AM, Bowden SD, Burr T, Coulthurst SJ, Monson RE, Salmond GP
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Quorum sensing, virulence and secondary metabolite production in plant soft-rotting bacteria.
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Philos Trans R Soc Lond B Biol Sci 362:1165-83 (2007)
DOI:10.1098/rstb.2007.2042
Reference
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Identification and characterization of three novel EsaI/EsaR quorum-sensing controlled stewartan exopolysaccharide biosynthetic genes in Pantoea stewartii ssp. stewartii.
  Journal
Mol Microbiol 74:903-13 (2009)
DOI:10.1111/j.1365-2958.2009.06906.x
Reference
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  Title
Capsular polysaccharide biosynthesis and pathogenicity in Erwinia stewartii require induction by an N-acylhomoserine lactone autoinducer.
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J Bacteriol 177:5000-8 (1995)
DOI:10.1128/JB.177.17.5000-5008.1995
Reference
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O'Grady EP, Viteri DF, Malott RJ, Sokol PA
  Title
Reciprocal regulation by the CepIR and CciIR quorum sensing systems in Burkholderia cenocepacia.
  Journal
BMC Genomics 10:441 (2009)
DOI:10.1186/1471-2164-10-441
Reference
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Malott RJ, Baldwin A, Mahenthiralingam E, Sokol PA
  Title
Characterization of the cciIR quorum-sensing system in Burkholderia cenocepacia.
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Infect Immun 73:4982-92 (2005)
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Deng Y, Schmid N, Wang C, Wang J, Pessi G, Wu D, Lee J, Aguilar C, Ahrens CH, Chang C, Song H, Eberl L, Zhang LH
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Cis-2-dodecenoic acid receptor RpfR links quorum-sensing signal perception with regulation of virulence through cyclic dimeric guanosine monophosphate turnover.
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Proc Natl Acad Sci U S A 109:15479-84 (2012)
DOI:10.1073/pnas.1205037109
Reference
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Suppiger A, Schmid N, Aguilar C, Pessi G, Eberl L
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Two quorum sensing systems control biofilm formation and virulence in members of the Burkholderia cepacia complex.
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Virulence 4:400-9 (2013)
DOI:10.4161/viru.25338
Reference
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Deng Y, Wu J, Tao F, Zhang LH
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Listening to a new language: DSF-based quorum sensing in Gram-negative bacteria.
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Chem Rev 111:160-73 (2011)
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Communication with a growing family: diffusible signal factor (DSF) signaling in bacteria.
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Trends Microbiol 19:145-52 (2011)
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Reference
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Kim J, Kim JG, Kang Y, Jang JY, Jog GJ, Lim JY, Kim S, Suga H, Nagamatsu T, Hwang I
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Quorum sensing and the LysR-type transcriptional activator ToxR regulate toxoflavin biosynthesis and transport in Burkholderia glumae.
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Mol Microbiol 54:921-34 (2004)
DOI:10.1111/j.1365-2958.2004.04338.x
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Kim J, Kang Y, Choi O, Jeong Y, Jeong JE, Lim JY, Kim M, Moon JS, Suga H, Hwang I
  Title
Regulation of polar flagellum genes is mediated by quorum sensing and FlhDC in Burkholderia glumae.
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Mol Microbiol 64:165-79 (2007)
DOI:10.1111/j.1365-2958.2007.05646.x
Reference
  Authors
Stauff DL, Bassler BL
  Title
Quorum sensing in Chromobacterium violaceum: DNA recognition and gene regulation by the CviR receptor.
  Journal
J Bacteriol 193:3871-8 (2011)
DOI:10.1128/JB.05125-11
Reference
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Chen G, Swem LR, Swem DL, Stauff DL, O'Loughlin CT, Jeffrey PD, Bassler BL, Hughson FM
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A strategy for antagonizing quorum sensing.
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Mol Cell 42:199-209 (2011)
DOI:10.1016/j.molcel.2011.04.003
Reference
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Hao G, Burr TJ
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Regulation of long-chain N-acyl-homoserine lactones in Agrobacterium vitis.
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J Bacteriol 188:2173-83 (2006)
DOI:10.1128/JB.188.6.2173-2183.2006
Reference
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Savka MA, Le PT, Burr TJ
  Title
LasR receptor for detection of long-chain quorum-sensing signals: identification of N-acyl-homoserine lactones encoded by the avsI locus of Agrobacterium vitis.
  Journal
Curr Microbiol 62:101-10 (2011)
DOI:10.1007/s00284-010-9679-1
Reference
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Le KY, Otto M
  Title
Quorum-sensing regulation in staphylococci-an overview.
  Journal
Front Microbiol 6:1174 (2015)
DOI:10.3389/fmicb.2015.01174
Reference
  Authors
Queck SY, Jameson-Lee M, Villaruz AE, Bach TH, Khan BA, Sturdevant DE, Ricklefs SM, Li M, Otto M
  Title
RNAIII-independent target gene control by the agr quorum-sensing system: insight into the evolution of virulence regulation in Staphylococcus aureus.
  Journal
Mol Cell 32:150-8 (2008)
DOI:10.1016/j.molcel.2008.08.005
Reference
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Darkoh C, DuPont HL, Norris SJ, Kaplan HB
  Title
Toxin synthesis by Clostridium difficile is regulated through quorum signaling.
  Journal
MBio 6:e02569 (2015)
DOI:10.1128/mBio.02569-14
Reference
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Vidal JE, Shak JR, Canizalez-Roman A
  Title
The CpAL quorum sensing system regulates production of hemolysins CPA and PFO to build Clostridium perfringens biofilms.
  Journal
Infect Immun 83:2430-42 (2015)
DOI:10.1128/IAI.00240-15
Reference
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Ohtani K, Yuan Y, Hassan S, Wang R, Wang Y, Shimizu T
  Title
Virulence gene regulation by the agr system in Clostridium perfringens.
  Journal
J Bacteriol 191:3919-27 (2009)
DOI:10.1128/JB.01455-08
Reference
  Authors
Li YH, Tian X
  Title
Quorum sensing and bacterial social interactions in biofilms.
  Journal
Sensors (Basel) 12:2519-38 (2012)
DOI:10.3390/s120302519
Reference
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Berg KH, Biornstad TJ, Johnsborg O, Havarstein LS
  Title
Properties and biological role of streptococcal fratricins.
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Appl Environ Microbiol 78:3515-22 (2012)
DOI:10.1128/AEM.00098-12
Reference
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Comparing the cariogenic species Streptococcus sobrinus and S. mutans on whole genome level.
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J Oral Microbiol 6:26189 (2014)
DOI:10.3402/jom.v6.26189
Reference
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Jimenez JC, Federle MJ
  Title
Quorum sensing in group A Streptococcus.
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Front Cell Infect Microbiol 4:127 (2014)
DOI:10.3389/fcimb.2014.00127
Reference
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Cook LC, Federle MJ
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Peptide pheromone signaling in Streptococcus and Enterococcus.
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FEMS Microbiol Rev 38:473-92 (2014)
DOI:10.1111/1574-6976.12046
Reference
PMID:9680220
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The group A streptococcal dipeptide permease (Dpp) is involved in the uptake of essential amino acids and affects the expression of cysteine protease.
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Mol Microbiol 28:1323-34 (1998)
DOI:10.1046/j.1365-2958.1998.00898.x
Reference
PMID:8885277
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  Title
Molecular characterization of group A streptococcal (GAS) oligopeptide permease (opp) and its effect on cysteine protease production.
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Mol Microbiol 21:1087-99 (1996)
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Growth phase-dependent modulation of Rgg binding specificity in Streptococcus pyogenes.
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J Bacteriol 194:3961-71 (2012)
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Clewell DB
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Tales of conjugation and sex pheromones: A plasmid and enterococcal odyssey.
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Mob Genet Elements 1:38-54 (2011)
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Wardal E, Sadowy E, Hryniewicz W
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Complex nature of enterococcal pheromone-responsive plasmids.
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Pol J Microbiol 59:79-87 (2010)
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Roux A, Payne SM, Gilmore MS
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Microbial telesensing: probing the environment for friends, foes, and food.
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Cell Host Microbe 6:115-24 (2009)
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Slamti L, Perchat S, Huillet E, Lereclus D
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Quorum sensing in Bacillus thuringiensis is required for completion of a full infectious cycle in the insect.
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Toxins (Basel) 6:2239-55 (2014)
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Extracellular signals that define distinct and coexisting cell fates in Bacillus subtilis.
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FEMS Microbiol Rev 34:134-49 (2010)
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Molecular analysis of Phr peptide processing in Bacillus subtilis.
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J Bacteriol 185:4861-71 (2003)
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Identification of subtilisin, Epr and Vpr as enzymes that produce CSF, an extracellular signalling peptide of Bacillus subtilis.
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Mol Microbiol 65:1321-33 (2007)
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Quorum sensing control of lantibiotic production; nisin and subtilin autoregulate their own biosynthesis.
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Peptides 25:1405-14 (2004)
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Bacterial quorum sensing: its role in virulence and possibilities for its control.
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Cold Spring Harb Perspect Med 2:a012427 (2012)
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LaSarre B, Federle MJ
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Exploiting quorum sensing to confuse bacterial pathogens.
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Microbiol Mol Biol Rev 77:73-111 (2013)
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Clin Infect Dis 47:1070-6 (2008)
DOI:10.1086/592072
Related
pathway
eec02040  Flagellar assembly
KO pathway
ko02024   
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