Affiliation:
1. The School of Animal and Microbial Sciences, University of Reading, Whiteknights, Reading RG6AJ
2. Department of Molecular Biology and Biotechnology, University of Sheffield, Sheffield S10 2TN, United Kingdom
Abstract
ABSTRACT
The DcuS-DcuR system of
Escherichia coli
is a two-component sensor-regulator that controls gene expression in response to external C
4
-dicarboxylates and citrate. The DcuS protein is particularly interesting since it contains two PAS domains, namely a periplasmic C
4
-dicarboxylate-sensing PAS domain (PASp) and a cytosolic PAS domain (PASc) of uncertain function. For a study of the role of the PASc domain, three different fragments of DcuS were overproduced and examined: they were PASc-kinase, PASc, and kinase. The two kinase-domain-containing fragments were autophosphorylated by [γ-
32
P]ATP. The rate was not affected by fumarate or succinate, supporting the role of the PASp domain in C
4
-dicarboxylate sensing. Both of the phosphorylated DcuS constructs were able to rapidly pass their phosphoryl groups to DcuR, and after phosphorylation, DcuR dephosphorylated rapidly. No prosthetic group or significant quantity of metal was found associated with either of the PASc-containing proteins. The DNA-binding specificity of DcuR was studied by use of the pure protein. It was found to be converted from a monomer to a dimer upon acetylphosphate treatment, and native polyacrylamide gel electrophoresis suggested that it can oligomerize. DcuR specifically bound to the promoters of the three known DcuSR-regulated genes (
dctA
,
dcuB
, and
frdA
), with apparent
K
D
s of 6 to 32 μM for untreated DcuR and ≤1 to 2 μM for the acetylphosphate-treated form. The binding sites were located by DNase I footprinting, allowing a putative DcuR-binding motif [tandemly repeated (T/A)(A/T)(T/C)(A/T)AA sequences] to be identified. The DcuR-binding sites of the
dcuB
,
dctA
, and
frdA
genes were located 27, 94, and 86 bp, respectively, upstream of the corresponding +1 sites, and a new promoter was identified for
dcuB
that responds to DcuR.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
45 articles.
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