4.4 Article

Differential processing of propeptide inhibitors of Rap phosphatases in Bacillus subtilis

Journal

JOURNAL OF BACTERIOLOGY
Volume 182, Issue 2, Pages 303-310

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/JB.182.2.303-310.2000

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Funding

  1. NIGMS NIH HHS [GM19416, GM55594, R37 GM019416, R01 GM019416, F32 GM019416, R01 GM055594] Funding Source: Medline
  2. NATIONAL INSTITUTE OF GENERAL MEDICAL SCIENCES [F32GM019416, R01GM055594, R37GM019416, R01GM019416] Funding Source: NIH RePORTER

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In the phosphorelay signal transduction system for sporulation initiation in Bacillus subtilis, the opposing activities of histidine kinases and aspartyl phosphate phosphatases determine the cell's decision whether to continue with vegetative growth or to initiate the differentiation process. Regulated dephosphorylation of the Spo0A and Spo0F response regulators allows a variety of negative signals from physiological processes that are antithetical to sporulation to impact on the activation level of the phosphorelay. Spo0F similar to P is the known target of two related phosphatases, RapA and RapB. In addition to RapA and RapB, a third member of the Rap family of phosphatases, RapE, specifically dephosphorylated the Spo0F similar to P intermediate in response to competence development. RapE phosphatase activity was found to be controlled by a pentapeptide (SRNVT) generated from within the carboxy-terminal domain of the phrE gene product. A synthetic PhrE pentapeptide could (i) complement the sporulation deficiency caused by deregulated RapE activity of a phrE mutant and (ii) inhibit RapE-dependent dephosphorylation of Spo0F similar to P in in vitro experiments. The PhrE pentapeptide did not inhibit the phosphatase activity of RapA and RapB. These results confirm previous conclusions that the specificity for recognition of the target phosphatase is contained within the amino acid sequence of the pentapeptide inhibitor.

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