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Characterization of human Spartan/C1orf124, an ubiquitin-PCNA interacting regulator of DNA damage tolerance

机译:人类Spartan / C1orf124的表征,一种泛素-PCNA相互作用的DNA损伤耐受调节剂

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摘要

Unrepaired DNA damage may arrest ongoing replication forks, potentially resulting in fork collapse, increased mutagenesis and genomic instability. Replication through DNA lesions depends on mono-and polyubiquitylation of proliferating cell nuclear antigen (PCNA), which enable translesion synthesis (TLS) and template switching, respectively. A proper replication fork rescue is ensured by the dynamic ubiquitylation and deubiquitylation of PCNA; however, as yet, little is known about its regulation. Here, we show that human Spartan/C1orf124 protein provides a higher cellular level of ubiquitylated-PCNA by which it regulates the choice of DNA damage tolerance pathways. We find that Spartan is recruited to sites of replication stress, a process that depends on its PCNA- and ubiquitin-interacting domains and the RAD18 PCNA ubiquitin ligase. Preferential association of Spartan with ubiquitin-modified PCNA protects against PCNA deubiquitylation by ubiquitin-specific protease 1 and facilitates the access of a TLS polymerase to the replication fork. In concert, depletion of Spartan leads to increased sensitivity to DNA damaging agents and causes elevated levels of sister chromatid exchanges. We propose that Spartan promotes genomic stability by regulating the choice of rescue of stalled replication fork, whose mechanism includes its interaction with ubiquitin-conjugated PCNA and protection against PCNA deubiquitylation.
机译:未修复的DNA损伤可能会阻止正在进行的复制叉,从而可能导致叉塌陷,诱变增加和基因组不稳定。通过DNA损伤的复制取决于增殖细胞核抗原(PCNA)的单泛素化和多泛素化,分别可实现跨病变合成(TLS)和模板转换。 PCNA的动态泛素化和去泛素化确保了正确的复制叉拯救。然而,到目前为止,对其调控知之甚少。在这里,我们显示人Spartan / C1orf124蛋白提供了更高的细胞泛素化PCNA水平,通过它调节DNA损伤耐受途径的选择。我们发现,Spartan被募集到复制压力位点,该过程取决于其PCNA和泛素相互作用域以及RAD18 PCNA泛素连接酶。 Spartan与泛素修饰的PCNA的优先结合可防止泛素特异性蛋白酶1使PCNA去泛素化,并有助于TLS聚合酶接近复制叉。一致地,斯巴达的耗竭导致对DNA破坏剂的敏感性增加,并导致姐妹染色单体交换的水平升高。我们提出,Spartan通过调节失速复制叉的拯救选择来促进基因组稳定性,其机制包括与缀合泛素的PCNA相互作用以及对PCNA去泛素化的保护。

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