Affiliation:
1. Molecular and Cellular Biology Graduate Program, Morrill Science Center
2. Department of Microbiology, Morrill Science Center IV N203, University of Massachusetts at Amherst, Amherst, Massachusetts 01003
Abstract
ABSTRACT
Genomic integrity is critical for an organism's survival and ability to reproduce. In
Escherichia coli
, the UvrD helicase has roles in nucleotide excision repair and methyl-directed mismatch repair and can limit reactions by RecA under certain circumstances. UvrD303 (D403A D404A) is a hyperhelicase mutant, and when expressed from a multicopy plasmid, it results in UV sensitivity (UV
s
), recombination deficiency, and antimutability. In order to understand the molecular mechanism underlying the UV
s
phenotype of
uvrD303
cells, this mutation was transferred to the
E. coli
chromosome and studied in single copy. It is shown here that
uvrD303
mutants are UV sensitive, recombination deficient, and antimutable and additionally have a moderate defect in inducing the SOS response after UV treatment. The UV-sensitive phenotype is epistatic with
recA
and additive with
uvrA
and is partially suppressed by removing the LexA repressor. Furthermore,
uvrD303
is able to inhibit constitutive SOS expression caused by the
recA730
mutation. The ability of UvrD303 to antagonize SOS expression was dependent on its 40 C-terminal amino acids. It is proposed that UvrD303, via its C terminus, can decrease the levels of RecA activity in the cell.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
22 articles.
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