Resistance against oxidative and electrophile stress
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Contents
Genes in this functional category
- adhA
- adhR
- ahpC
- ahpF
- azoR1
- azoR2
- bsaA
- bshA
- bshB1
- bshB2
- bshC
- catD
- catE
- catR
- hxlA
- hxlB
- hxlR
- hypO
- hypR
- katA
- katE
- katX
- liaF
- liaG
- liaH
- liaI
- liaR
- liaS
- mhqA
- mhqD
- mhqE
- mhqN
- mhqO
- mhqP
- mhqR
- mrgA
- msrA
- msrB
- nfrA
- ohrA
- ohrB
- ohrR
- perR
- sodA
- sodF
- sqhC
- tpx
- trxA
- yfiT
- ykuV
- yodB
- yodC
- yojM
- yqjL
- yqjM
- yraA
- yvgN
- ywbC
Additional candidates (based on similarity)
Important original publications
Additional publications: PubMed
Reviews
James M Dubbs, Skorn Mongkolsuk
Peroxide-sensing transcriptional regulators in bacteria.
J Bacteriol: 2012, 194(20);5495-503
[PubMed:22797754]
[WorldCat.org]
[DOI]
(I p)
Maarten Mols, Tjakko Abee
Primary and secondary oxidative stress in Bacillus.
Environ Microbiol: 2011, 13(6);1387-94
[PubMed:21352461]
[WorldCat.org]
[DOI]
(I p)
Peter Zuber
Management of oxidative stress in Bacillus.
Annu Rev Microbiol: 2009, 63;575-97
[PubMed:19575568]
[WorldCat.org]
[DOI]
(I p)
Haike Antelmann, Michael Hecker, Peter Zuber
Proteomic signatures uncover thiol-specific electrophile resistance mechanisms in Bacillus subtilis.
Expert Rev Proteomics: 2008, 5(1);77-90
[PubMed:18282125]
[WorldCat.org]
[DOI]
(I p)
B C Dowds
The oxidative stress response in Bacillus subtilis.
FEMS Microbiol Lett: 1994, 124(3);255-63
[PubMed:7851732]
[WorldCat.org]
[DOI]
(P p)