Difference between revisions of "EpsC"

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* '''Description:''' extracellular polysaccharide synthesis <br/><br/>
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* '''Description:''' extracellular polysaccharide synthesis, this gene is inactive in ''B. subtilis'' 168  <br/><br/>
  
 
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=== Additional information===
 
=== Additional information===
 
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* Correction of ''[[sfp]]'', ''[[epsC]]'','' [[swrAA]]'', and ''[[degQ]]'' as well as introduction of ''rapP'' from a plasmid present in NCIB3610 results in biofilm formation in ''B. subtilis'' 168 {{PubMed|21278284}}
 
 
  
  
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<pubmed> 20384681 20735481 </pubmed>
 
<pubmed> 20384681 20735481 </pubmed>
 
==Original publications==
 
==Original publications==
 
 
==The EAR [[RNA switch]]==
 
==The EAR [[RNA switch]]==
 
<pubmed>20374491 20230605 </pubmed>
 
<pubmed>20374491 20230605 </pubmed>
 
==Regulation of the ''eps'' operon==
 
==Regulation of the ''eps'' operon==
 
<pubmed>15661000,16430695,18047568,18647168 20817675</pubmed>
 
<pubmed>15661000,16430695,18047568,18647168 20817675</pubmed>
 +
==Other original publications==
 +
<pubmed> 21278284 </pubmed>
 
[[Category:Protein-coding genes]]
 
[[Category:Protein-coding genes]]

Revision as of 10:16, 1 February 2011

  • Description: extracellular polysaccharide synthesis, this gene is inactive in B. subtilis 168

Gene name epsC
Synonyms yveM
Essential no
Product unknown
Function biofilm formation
Regulation of this protein in SubtiPathways:
Biofilm
MW, pI 66 kDa, 8.775
Gene length, protein length 1794 bp, 598 aa
Immediate neighbours epsD, epsB
Get the DNA and protein sequences
(Barbe et al., 2009)
Genetic context
YveM context.gif
This image was kindly provided by SubtiList







Categories containing this gene/protein

biofilm formation, membrane proteins

This gene is a member of the following regulons

EAR riboswitch, SinR regulon

The gene

Basic information

  • Locus tag: BSU34350

Phenotypes of a mutant

Database entries

  • DBTBS entry: [1]
  • SubtiList entry: [2]

Additional information

  • Correction of sfp, epsC, swrAA, and degQ as well as introduction of rapP from a plasmid present in NCIB3610 results in biofilm formation in B. subtilis 168 PubMed


The protein

Basic information/ Evolution

  • Catalyzed reaction/ biological activity:
  • Protein family: polysaccharide synthase family (according to Swiss-Prot)
  • Paralogous protein(s):

Extended information on the protein

  • Kinetic information:
  • Domains:
  • Modification:
  • Cofactor(s):
  • Effectors of protein activity:
  • Interactions:
  • Localization: cell membrane (according to Swiss-Prot)

Database entries

  • Structure:
  • KEGG entry: [3]
  • E.C. number:

Additional information

Expression and regulation

  • Additional information:

Biological materials

  • Mutant:
  • Expression vector:
  • lacZ fusion:
  • GFP fusion:
  • two-hybrid system:
  • Antibody:

Labs working on this gene/protein

Richard Losick, Harvard Univ., Cambridge, USA homepage

Your additional remarks

References

Reviews

Massimiliano Marvasi, Pieter T Visscher, Lilliam Casillas Martinez
Exopolymeric substances (EPS) from Bacillus subtilis: polymers and genes encoding their synthesis.
FEMS Microbiol Lett: 2010, 313(1);1-9
[PubMed:20735481] [WorldCat.org] [DOI] (I p)

Irina Artsimovitch
A processive riboantiterminator seeks a switch to make biofilms.
Mol Microbiol: 2010, 76(3);535-9
[PubMed:20384681] [WorldCat.org] [DOI] (I p)

Original publications

The EAR RNA switch

Regulation of the eps operon

Onuma Chumsakul, Hiroki Takahashi, Taku Oshima, Takahiro Hishimoto, Shigehiko Kanaya, Naotake Ogasawara, Shu Ishikawa
Genome-wide binding profiles of the Bacillus subtilis transition state regulator AbrB and its homolog Abh reveals their interactive role in transcriptional regulation.
Nucleic Acids Res: 2011, 39(2);414-28
[PubMed:20817675] [WorldCat.org] [DOI] (I p)

Kazuo Kobayashi
SlrR/SlrA controls the initiation of biofilm formation in Bacillus subtilis.
Mol Microbiol: 2008, 69(6);1399-410
[PubMed:18647168] [WorldCat.org] [DOI] (I p)

Yunrong Chai, Frances Chu, Roberto Kolter, Richard Losick
Bistability and biofilm formation in Bacillus subtilis.
Mol Microbiol: 2008, 67(2);254-63
[PubMed:18047568] [WorldCat.org] [DOI] (P p)

Frances Chu, Daniel B Kearns, Steven S Branda, Roberto Kolter, Richard Losick
Targets of the master regulator of biofilm formation in Bacillus subtilis.
Mol Microbiol: 2006, 59(4);1216-28
[PubMed:16430695] [WorldCat.org] [DOI] (P p)

Daniel B Kearns, Frances Chu, Steven S Branda, Roberto Kolter, Richard Losick
A master regulator for biofilm formation by Bacillus subtilis.
Mol Microbiol: 2005, 55(3);739-49
[PubMed:15661000] [WorldCat.org] [DOI] (P p)

Other original publications

Anna L McLoon, Sarah B Guttenplan, Daniel B Kearns, Roberto Kolter, Richard Losick
Tracing the domestication of a biofilm-forming bacterium.
J Bacteriol: 2011, 193(8);2027-34
[PubMed:21278284] [WorldCat.org] [DOI] (I p)