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Differential Roles for DNA Polymerases Eta Zeta and REV1 in Lesion Bypass of Intrastrand versus Interstrand DNA Cross-Links

机译:DNA聚合酶EtaZeta和REV1在链内和链间DNA交联的病变旁路中的差异作用

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摘要

Translesion DNA synthesis (TLS) is a process whereby specialized DNA polymerases are recruited to bypass DNA lesions that would otherwise stall high-fidelity polymerases. We provide evidence that TLS across cisplatin intrastrand cross-links is performed by multiple translesion DNA polymerases. First, we determined that PCNA monoubiquitination by RAD18 is necessary for efficient bypass of cisplatin adducts by the TLS polymerases eta (Polη), REV1, and zeta (Polζ) based on the observations that depletion of these proteins individually leads to decreased cell survival, cell cycle arrest in S phase, and activation of the DNA damage response. Second, we showed that in addition to PCNA monoubiquitination by RAD18, the Fanconi anemia core complex is also important for recruitment of REV1 to stalled replication forks in cisplatin treated cells. Third, we present evidence that REV1 and Polζ are uniquely associated with protection against cisplatin and mitomycin C-induced chromosomal aberrations, and both are necessary for the timely resolution of DNA double-strand breaks associated with repair of DNA interstrand cross-links. Together, our findings indicate that REV1 and Polζ facilitate repair of interstrand cross-links independently of PCNA monoubiquitination and Polη, whereas RAD18 plus Polη, REV1, and Polζ are all necessary for replicative bypass of cisplatin intrastrand DNA cross-links.
机译:跨病变DNA合成(TLS)是招募专门的DNA聚合酶来绕过DNA病变的过程,否则DNA病变将使高保真聚合酶停滞。我们提供的证据表明,跨顺铂链内交联的TLS是由多个跨病变DNA聚合酶执行的。首先,基于观察到这些蛋白质的消耗会单独导致细胞存活率降低,我们确定RAD18的PCNA单泛素化对于通过TLS聚合酶eta(Polη),REV1和zeta(Polζ)有效绕过顺铂加合物是必要的。周期停滞在S期,并激活DNA损伤反应。其次,我们显示,除了RAD18进行PCNA单泛素化外,Fanconi贫血核心复合物对于将REV1募集到顺铂处理细胞中停滞的复制叉中也很重要。第三,我们提供的证据表明,REV1和Polζ与针对顺铂和丝裂霉素C诱导的染色体畸变的保护作用独特相关,并且对于及时解决与修复DNA链间交联有关的DNA双链断裂都是必需的。在一起,我们的发现表明REV1和Polζ独立于PCNA单泛素化和Polη促进链间交联的修复,而RAD18加Polη,REV1和Polζ都是顺铂内链DNA交联的复制旁路所必需的。

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