Affiliation:
1. Department of Biochemistry and Molecular Biology, Louisiana State University Medical Center, Shreveport, Louisiana 71130-3932
Abstract
ABSTRACT
The expression of the
srf
operon of
Bacillus subtilis
, encoding surfactin synthetase and the competence regulatory protein ComS, was observed to be reduced when cells were grown in a rich glucose- and glutamine-containing medium in which late-growth culture pH was 5.0 or lower. The production of the surfactin synthetase subunits and of surfactin itself was also reduced. Raising the pH to near neutrality resulted in dramatic increases in
srf
expression and surfactin production. This apparent pH-dependent induction of
srf
expression required
spo0K
, which encodes the oligopeptide permease that functions in cell-density-dependent control of sporulation and competence, but not CSF, the competence-inducing pheromone that regulates
srf
expression in a Spo0K-dependent manner. Both ComP and ComA, the two-component regulatory pair that stimulates cell-density-dependent
srf
transcription, were required for optimal expression of
srf
at low and high pHs, but ComP was not required for pH-dependent
srf
induction. The known negative regulators of
srf
, RapC and CodY, were found not to function significantly in pH-dependent
srf
expression. Late-growth culture supernatants at low pH were not active in inducing
srf
expression in cells of low-density cultures but were rendered active when their pH was raised to near neutrality. ComQ (and very likely the
srf
-inducing pheromone ComX) and Spo0K were found to be required for the extracellular induction of
srf-lacZ
at neutral pH. The results suggest that
srf
expression, in response to changes in culture pH, requires Spo0K and another, as yet unidentified, extracellular factor. The study also provides evidence consistent with the hypothesis that ComP acts both positively and negatively in the regulation of ComA and that both activities are controlled by the ComX pheromone.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
79 articles.
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