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Phosphorylation and RsbX-Dependent Dephosphorylation of RsbR in the RsbR-RsbS Complex ofBacillus subtilis
Author(s) -
Chien-Cheng Chen,
Michael D. Yudkin,
Olivier Delumeau
Publication year - 2004
Publication title -
journal of bacteriology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.652
H-Index - 246
eISSN - 1067-8832
pISSN - 0021-9193
DOI - 10.1128/jb.186.20.6830-6836.2004
Subject(s) - dephosphorylation , bacillus subtilis , phosphorylation , phosphatase , biology , threonine , mutant , biochemistry , kinase , protein phosphorylation , serine , microbiology and biotechnology , protein kinase a , bacteria , genetics , gene
In the pathway that controls sigmaB activity, the RsbR-RsbS complex plays an important role by trapping RsbT, a positive regulator of sigmaB of Bacillus subtilis. We have proposed that at the onset of stress, RsbR becomes phosphorylated, resulting in an enhanced activity of RsbT towards RsbS. RsbT is then free to interact with and activate RsbU, which in turn ultimately activates sigmaB. In this study with purified proteins, we used mutant RsbR proteins to analyze the role of its phosphorylatable threonine residues. The results show that the phosphorylation of either of the two RsbT-phosphorylatable threonine residues (T171 and T205) in RsbR enhanced the kinase activity of RsbT towards RsbS. However, it appeared that RsbT preferentially phosphorylates T171. We also present in vitro evidence that identifies RsbX as a potential phosphatase for RsbR T205.

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