Difference between revisions of "CccA"
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− | <pubmed>2171986,10024472,12884008,8383048,2166045,12850135 11361075, 22900538 22900538 22383849 20817675</pubmed> | + | <pubmed>2171986,10024472,12884008,8383048,2166045,12850135 11361075, 22900538 22900538 22383849 20817675 10473570 </pubmed> |
[[Category:Protein-coding genes]] | [[Category:Protein-coding genes]] |
Revision as of 16:05, 11 August 2013
- Description: cytochrome c550
Gene name | cccA |
Synonyms | |
Essential | no |
Product | cytochrome c550 |
Function | respiration |
Gene expression levels in SubtiExpress: cccA | |
MW, pI | 12 kDa, 5.276 |
Gene length, protein length | 360 bp, 120 aa |
Immediate neighbours | trmK, sigA |
Sequences | Protein DNA DNA_with_flanks |
Genetic context This image was kindly provided by SubtiList
| |
Expression at a glance PubMed 500px |
Contents
Categories containing this gene/protein
respiration, membrane proteins
This gene is a member of the following regulons
The gene
Basic information
- Locus tag: BSU25190
Phenotypes of a mutant
Database entries
- DBTBS entry: no entry
- SubtiList entry: [1]
Additional information
The protein
Basic information/ Evolution
- Catalyzed reaction/ biological activity:
- Protein family:
- Paralogous protein(s):
Extended information on the protein
- Kinetic information:
- Domains:
- transmembrane domain at the N-terminus (aa 5 -25) PubMed
- Modification:
- Cofactor(s): heme c PubMed
- Effectors of protein activity:
- Localization:
- cell membrane PubMed
Database entries
- Structure:
- UniProt: P24469
- KEGG entry: [2]
- E.C. number:
Additional information
Expression and regulation
- Regulatory mechanism:
- Additional information: the mRNA is very stable (half-life > 15 min) PubMed
Biological materials
- Mutant:
- Expression vector:
- lacZ fusion:
- GFP fusion:
- two-hybrid system:
- Antibody:
Labs working on this gene/protein
Your additional remarks
References
Bogumiła C Marciniak, Monika Pabijaniak, Anne de Jong, Robert Dűhring, Gerald Seidel, Wolfgang Hillen, Oscar P Kuipers
High- and low-affinity cre boxes for CcpA binding in Bacillus subtilis revealed by genome-wide analysis.
BMC Genomics: 2012, 13;401
[PubMed:22900538]
[WorldCat.org]
[DOI]
(I e)
Pierre Nicolas, Ulrike Mäder, Etienne Dervyn, Tatiana Rochat, Aurélie Leduc, Nathalie Pigeonneau, Elena Bidnenko, Elodie Marchadier, Mark Hoebeke, Stéphane Aymerich, Dörte Becher, Paola Bisicchia, Eric Botella, Olivier Delumeau, Geoff Doherty, Emma L Denham, Mark J Fogg, Vincent Fromion, Anne Goelzer, Annette Hansen, Elisabeth Härtig, Colin R Harwood, Georg Homuth, Hanne Jarmer, Matthieu Jules, Edda Klipp, Ludovic Le Chat, François Lecointe, Peter Lewis, Wolfram Liebermeister, Anika March, Ruben A T Mars, Priyanka Nannapaneni, David Noone, Susanne Pohl, Bernd Rinn, Frank Rügheimer, Praveen K Sappa, Franck Samson, Marc Schaffer, Benno Schwikowski, Leif Steil, Jörg Stülke, Thomas Wiegert, Kevin M Devine, Anthony J Wilkinson, Jan Maarten van Dijl, Michael Hecker, Uwe Völker, Philippe Bessières, Philippe Noirot
Condition-dependent transcriptome reveals high-level regulatory architecture in Bacillus subtilis.
Science: 2012, 335(6072);1103-6
[PubMed:22383849]
[WorldCat.org]
[DOI]
(I p)
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)
G Hambraeus, C von Wachenfeldt, L Hederstedt
Genome-wide survey of mRNA half-lives in Bacillus subtilis identifies extremely stable mRNAs.
Mol Genet Genomics: 2003, 269(5);706-14
[PubMed:12884008]
[WorldCat.org]
[DOI]
(P p)
Hans-Matti Blencke, Georg Homuth, Holger Ludwig, Ulrike Mäder, Michael Hecker, Jörg Stülke
Transcriptional profiling of gene expression in response to glucose in Bacillus subtilis: regulation of the central metabolic pathways.
Metab Eng: 2003, 5(2);133-49
[PubMed:12850135]
[WorldCat.org]
[DOI]
(P p)
V Monedero, G Boël, J Deutscher
Catabolite regulation of the cytochrome c550-encoding Bacillus subtilis cccA gene.
J Mol Microbiol Biotechnol: 2001, 3(3);433-8
[PubMed:11361075]
[WorldCat.org]
(P p)
J Bengtsson, C Rivolta, L Hederstedt, D Karamata
Bacillus subtilis contains two small c-type cytochromes with homologous heme domains but different types of membrane anchors.
J Biol Chem: 1999, 274(37);26179-84
[PubMed:10473570]
[WorldCat.org]
[DOI]
(P p)
P S David, M R Morrison, S L Wong, B C Hill
Expression, purification, and characterization of recombinant forms of membrane-bound cytochrome c-550nm from Bacillus subtilis.
Protein Expr Purif: 1999, 15(1);69-76
[PubMed:10024472]
[WorldCat.org]
[DOI]
(P p)
C von Wachenfeldt, L Hederstedt
Physico-chemical characterisation of membrane-bound and water-soluble forms of Bacillus subtilis cytochrome c-550.
Eur J Biochem: 1993, 212(2);499-509
[PubMed:8383048]
[WorldCat.org]
[DOI]
(P p)
C von Wachenfeldt, L Hederstedt
Bacillus subtilis holo-cytochrome c-550 can be synthesised in aerobic Escherichia coli.
FEBS Lett: 1990, 270(1-2);147-51
[PubMed:2171986]
[WorldCat.org]
[DOI]
(P p)
C von Wachenfeldt, L Hederstedt
Bacillus subtilis 13-kilodalton cytochrome c-550 encoded by cccA consists of a membrane-anchor and a heme domain.
J Biol Chem: 1990, 265(23);13939-48
[PubMed:2166045]
[WorldCat.org]
(P p)