Difference between revisions of "TasA"
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− | + | * '''Description:''' major component of biofilm matrix, forms amyloid fibers<br/><br/> | |
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− | * '''Description:''' major component of biofilm matrix, forms amyloid fibers | ||
{| align="right" border="1" cellpadding="2" | {| align="right" border="1" cellpadding="2" | ||
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|style="background:#ABCDEF;" align="center"|'''Function''' || [[biofilm formation]] | |style="background:#ABCDEF;" align="center"|'''Function''' || [[biofilm formation]] | ||
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− | |colspan="2" style="background:#FAF8CC;" align="center"| '''Regulation of this protein in [[SubtiPathways|''Subti''Pathways]]: | + | |colspan="2" style="background:#FAF8CC;" align="center"| '''Regulation of this protein in [[SubtiPathways|''Subti''Pathways]]: <br/>[http://subtiwiki.uni-goettingen.de/pathways/biofilm.html Biofilm]''' |
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|style="background:#ABCDEF;" align="center"| '''MW, pI''' || 28 kDa, 5.442 | |style="background:#ABCDEF;" align="center"| '''MW, pI''' || 28 kDa, 5.442 | ||
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|style="background:#ABCDEF;" align="center"|'''Immediate neighbours''' || ''[[sinR]]'', ''[[sipW]]'' | |style="background:#ABCDEF;" align="center"|'''Immediate neighbours''' || ''[[sinR]]'', ''[[sipW]]'' | ||
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− | |colspan="2" style="background:#FAF8CC;" align="center"|'''Get the DNA and protein [http://srs.ebi.ac.uk/srsbin/cgi-bin/wgetz?-e+& | + | |colspan="2" style="background:#FAF8CC;" align="center"|'''Get the DNA and protein [http://srs.ebi.ac.uk/srsbin/cgi-bin/wgetz?-e+[EMBLCDS:CAB14393]+-newId sequences] <br/> (Barbe ''et al.'', 2009)''' |
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− | |colspan="2" | '''Genetic context''' | + | |colspan="2" | '''Genetic context''' <br/> [[Image:tasA_context.gif]] |
− | + | <div align="right"> <small>This image was kindly provided by [http://genolist.pasteur.fr/SubtiList/ SubtiList]</small></div> | |
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__TOC__ | __TOC__ | ||
− | + | <br/><br/><br/><br/><br/><br/> | |
=The gene= | =The gene= | ||
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=References= | =References= | ||
==Reviews== | ==Reviews== | ||
− | + | <pubmed>20735481 20351052 </pubmed> | |
==Original publications== | ==Original publications== | ||
− | + | <pubmed>18047568,16430695,16430696,10368135,18430133,,18647168 ,10464223,17720793,18957862 12107147 18763711, 20080671 </pubmed> | |
[[Category:Protein-coding genes]] | [[Category:Protein-coding genes]] |
Revision as of 04:56, 24 November 2010
- Description: major component of biofilm matrix, forms amyloid fibers
Gene name | tasA |
Synonyms | cotN, yqhF |
Essential | no |
Product | major component of biofilm matrix |
Function | biofilm formation |
Regulation of this protein in SubtiPathways: Biofilm | |
MW, pI | 28 kDa, 5.442 |
Gene length, protein length | 783 bp, 261 aa |
Immediate neighbours | sinR, sipW |
Get the DNA and protein sequences (Barbe et al., 2009) | |
Genetic context This image was kindly provided by SubtiList
|
Contents
The gene
Basic information
- Locus tag: BSU24620
Phenotypes of a mutant
Database entries
- DBTBS entry: [1]
- SubtiList entry: [2]
Additional information
The protein
Basic information/ Evolution
- Catalyzed reaction/ biological activity: forms amyloid fibers that bind cells together in the biofilm PubMed
- Protein family: peptidase M73 family (according to Swiss-Prot)
- Paralogous protein(s):
Extended information on the protein
- Kinetic information:
- Domains:
- Modification:
- Cofactor(s):
- Effectors of protein activity:
- Interactions: forms fibers of variable length and 10-15 nm in width PubMed
Database entries
- Structure:
- UniProt: P54507
- KEGG entry: [3]
- E.C. number:
Additional information
Expression and regulation
- Regulation:
Biological materials
- Mutant:
- Expression vector:
- lacZ fusion:
- GFP fusion:
- two-hybrid system:
- Antibody:
Labs working on this gene/protein
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)
Yunrong Chai, Thomas Norman, Roberto Kolter, Richard Losick
An epigenetic switch governing daughter cell separation in Bacillus subtilis.
Genes Dev: 2010, 24(8);754-65
[PubMed:20351052]
[WorldCat.org]
[DOI]
(I p)
Original publications
Diego Romero, Claudio Aguilar, Richard Losick, Roberto Kolter
Amyloid fibers provide structural integrity to Bacillus subtilis biofilms.
Proc Natl Acad Sci U S A: 2010, 107(5);2230-4
[PubMed:20080671]
[WorldCat.org]
[DOI]
(I p)
Birgit Voigt, Haike Antelmann, Dirk Albrecht, Armin Ehrenreich, Karl-Heinz Maurer, Stefan Evers, Gerhard Gottschalk, Jan Maarten van Dijl, Thomas Schweder, Michael Hecker
Cell physiology and protein secretion of Bacillus licheniformis compared to Bacillus subtilis.
J Mol Microbiol Biotechnol: 2009, 16(1-2);53-68
[PubMed:18957862]
[WorldCat.org]
[DOI]
(I p)
Hannes Hahne, Susanne Wolff, Michael Hecker, Dörte Becher
From complementarity to comprehensiveness--targeting the membrane proteome of growing Bacillus subtilis by divergent approaches.
Proteomics: 2008, 8(19);4123-36
[PubMed:18763711]
[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)
Frances Chu, Daniel B Kearns, Anna McLoon, Yunrong Chai, Roberto Kolter, Richard Losick
A novel regulatory protein governing biofilm formation in Bacillus subtilis.
Mol Microbiol: 2008, 68(5);1117-27
[PubMed:18430133]
[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)
Mark A Strauch, Benjamin G Bobay, John Cavanagh, Fude Yao, Angelo Wilson, Yoann Le Breton
Abh and AbrB control of Bacillus subtilis antimicrobial gene expression.
J Bacteriol: 2007, 189(21);7720-32
[PubMed:17720793]
[WorldCat.org]
[DOI]
(P p)
Steven S Branda, Frances Chu, Daniel B Kearns, Richard Losick, Roberto Kolter
A major protein component of the Bacillus subtilis biofilm matrix.
Mol Microbiol: 2006, 59(4);1229-38
[PubMed:16430696]
[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)
Ulrike Mäder, Georg Homuth, Christian Scharf, Knut Büttner, Rüdiger Bode, Michael Hecker
Transcriptome and proteome analysis of Bacillus subtilis gene expression modulated by amino acid availability.
J Bacteriol: 2002, 184(15);4288-95
[PubMed:12107147]
[WorldCat.org]
[DOI]
(P p)
A G Stöver, A Driks
Regulation of synthesis of the Bacillus subtilis transition-phase, spore-associated antibacterial protein TasA.
J Bacteriol: 1999, 181(17);5476-81
[PubMed:10464223]
[WorldCat.org]
[DOI]
(P p)
M Serrano, R Zilhão, E Ricca, A J Ozin, C P Moran, A O Henriques
A Bacillus subtilis secreted protein with a role in endospore coat assembly and function.
J Bacteriol: 1999, 181(12);3632-43
[PubMed:10368135]
[WorldCat.org]
[DOI]
(P p)