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Cohesin Causes Replicative DNA Damage by Trapping DNA Topological Stress

Mol Cell. 2020-03; 
Minchell NE, Keszthelyi A, Baxter J
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摘要

DNA topological stress inhibits DNA replication fork (RF) progression and contributes to DNA replication stress. In Saccharomyces cerevisiae, we demonstrate that centromeric DNA and the rDNA array are especially vulnerable to DNA topological stress during replication. The activity of the SMC complexes cohesin and condensin are linked to both the generation and repair of DNA topological-stress-linked damage in these regions. At cohesin-enriched centromeres, cohesin activity causes the accumulation of DNA damage, RF rotation, and pre-catenation, confirming that cohesin-dependent DNA topological stress impacts on normal replication progression. In contrast, at the rDNA, cohesin an... More

关键词

DNA damage; DNA replication stress; DNA topology; SMC; cohesin; condensin; topoisomerases
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