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Beneficial and detrimental genes in the cellular response to replication arrest.


ABSTRACT: DNA replication is essential for all living organisms. Several events can disrupt replication, including DNA damage (e.g., pyrimidine dimers, crosslinking) and so-called "roadblocks" (e.g., DNA-binding proteins or transcription). Bacteria have several well-characterized mechanisms for repairing damaged DNA and then restoring functional replication forks. However, little is known about the repair of stalled or arrested replication forks in the absence of chemical alterations to DNA. Using a library of random transposon insertions in Bacillus subtilis, we identified 35 genes that affect the ability of cells to survive exposure to an inhibitor that arrests replication elongation, but does not cause chemical alteration of the DNA. Genes identified include those involved in iron-sulfur homeosta

SUBMITTER: Schons-Fonseca L 

PROVIDER: S-EPMC9836290 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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