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PMID: 12125823 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A phylogenomic study of the general stress response sigma factor sigmaB of Bacillus subtilis and its regulatory proteins.

Journal of molecular microbiology and biotechnology ·Vol. 4 ·No. 4 ·2002-07-00 ·Pages 427-52

Mittenhuber G

Abstract

Regulation of expression of the general stress regulon of Bacillus subtilis is mediated by the activation of the alternative sigma factor sigmaB. Activation of sigmaB is accomplished by a complex regulatory network involving protein-protein interactions and reversible protein phosphorylation. PSI-BLAST searches were performed and phylogenetic trees for sigmaB and its regulatory proteins were constructed. Occurrence of sigmaB is restricted to a small group of gram-positive bacteria (Bacillus, Staphylococcus, Listeria). Related sigma factors also involved in stress responses are present in Mycobacterium tuberculosis, Streptomyces species and even in cyanobacteria (Synechocystis species). Putative regulatory proteins found in several other bacterial species can be broadly catagorized into three categories: Anti sigma factors, anti-anti sigma factors and phosphatases. Anti sigma factors are able to bind to sigma factors and are also kinases of anti sigma factor antagonists. Only in their nonphosphorylated state, these antagonists are able to bind to the anti sigma factor. Phosphorylated antagonists can be dephosphorylated by PP2C phosphatases. These phosphatases are of pivotal importance for activation of the sigma factor. Different phosphatases identified in this search contain a wide variety of domains found in signal transducing proteins (PAS/PAC, GAF, REC, HATase_c, HAMP). The HATPase_c domain found in several phosphatases most probably constitutes a serine/threonine kinase domain of anti sigma factors. Such proteins are most probably bifunctional anti-anti sigma factor kinases and phosphatases. The regulatory network of anti-anti sigma factors anti sigma factors and phosphatases is probably ancient and most likely evolved from a structurally similar network found in the Deinococcus radiodurans genome. In completely sequenced genomes of several bacterial species, some elements of the network are missing. The N-terminus of RsbU, a phosphatase activated in response to environmental stress exhibits similarities to a region in the beta chain of phenylalanyl-tRNA synthetases.

MeSH Terms
Amino Acid Sequence Bacillus subtilis/classification,genetics Bacterial Proteins/genetics Gram-Negative Bacteria/genetics Molecular Sequence Data Phenylalanine-tRNA Ligase/genetics Phosphorylation Phylogeny Sequence Alignment Sequence Homology, Amino Acid Sigma Factor/genetics Transcription Factors/genetics
Chemicals
Bacterial Proteins SigB protein, Bacteria Sigma Factor Transcription Factors Phenylalanine-tRNA Ligase
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Mittenhuber Gerhard
Gerhard.Mittenhuber@biologie.uni-greifswald.de
Article Info
Journal
Journal of molecular microbiology and biotechnology
Abbr.
J Mol Microbiol Biotechnol
ISSN
1464-1801
Published
2002-07-00
Pages
427-52
Language
English
Region
Switzerland
NLM ID
100892561
Subset
IM
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