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一项基于增殖细胞核抗原(PCNA)-泛素融合蛋白的遗传学研究表明,DNA损伤耐受并不需要PCNA多聚泛素化。

A genetic study based on PCNA-ubiquitin fusions reveals no requirement for PCNA polyubiquitylation in DNA damage tolerance.

作者信息

Gervai Judit Z, Gálicza Judit, Szeltner Zoltán, Zámborszky Judit, Szüts Dávid

机构信息

Institute of Enzymology, Research Centre for Natural Sciences, Hungarian Academy of Sciences, Magyar tudósok krt. 2, Budapest, H-1117, Hungary.

Macromolecular Crystallography Group, Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, Göttingen, 37077, Germany.

出版信息

DNA Repair (Amst). 2017 Jun;54:46-54. doi: 10.1016/j.dnarep.2017.04.003. Epub 2017 Apr 14.

Abstract

Post-translational modifications of Proliferating Cell Nuclear Antigen (PCNA) play a key role in regulating the bypass of DNA lesions during DNA replication. PCNA can be monoubiquitylated at lysine 164 by the RAD6-RAD18 ubiquitin ligase complex. Through this modification, PCNA can interact with low fidelity Y family DNA polymerases to promote translesion synthesis. Monoubiquitylated PCNA can be polyubiquitylated on lysine 63 of ubiquitin by a further ubiquitin-conjugating complex. This modification promotes a template switching bypass process in yeast, while its role in higher eukaryotes is less clear. We investigated the function of PCNA ubiquitylation using a PCNA mutant DT40 chicken B lymphoblastoma cell line, which is hypersensitive to DNA damaging agents such as methyl methanesulfonate (MMS), cisplatin or ultraviolet radiation (UV) due to the loss of PCNA modifications. In the PCNA mutant we also detected cell cycle arrest following UV treatment, a reduced rate of damage bypass through translesion DNA synthesis on synthetic UV photoproducts, and an increased rate of genomic mutagenesis following MMS treatment. PCNA-ubiquitin fusion proteins have been reported to mimic endogenous PCNA ubiquitylation. We found that the stable expression of a PCNA-ubiquitin fusion protein fully or partially rescued the observed defects of the PCNA mutant. The expression of a PCNA-ubiquitin fusion protein, on which the formation of lysine 63-linked polyubiquitin chains is not possible, similarly rescued the cell cycle arrest, DNA damage sensitivity, reduction of translesion synthesis and increase of MMS-induced genomic mutagenesis. Template switching bypass was not affected by the genetic elimination of PCNA polyubiquitylation, but it was reduced in the absence of the recombination proteins BRCA1 or XRCC3. Our study found no requirement for PCNA polyubiquitylation to protect cells from replication-stalling DNA damage.

摘要

增殖细胞核抗原(PCNA)的翻译后修饰在DNA复制过程中调控DNA损伤的绕过发挥关键作用。PCNA可被RAD6-RAD18泛素连接酶复合物在赖氨酸164处单泛素化。通过这种修饰,PCNA可与低保真度的Y家族DNA聚合酶相互作用以促进跨损伤合成。单泛素化的PCNA可被另一种泛素结合复合物在泛素的赖氨酸63处多泛素化。这种修饰在酵母中促进模板转换绕过过程,而其在高等真核生物中的作用尚不清楚。我们使用对DNA损伤剂如甲磺酸甲酯(MMS)、顺铂或紫外线辐射(UV)敏感的PCNA突变DT40鸡B淋巴瘤细胞系研究了PCNA泛素化的功能,该细胞系因PCNA修饰缺失而对这些损伤剂敏感。在PCNA突变体中,我们还检测到紫外线处理后细胞周期停滞、通过合成紫外线光产物上的跨损伤DNA合成绕过损伤的速率降低以及MMS处理后基因组诱变率增加。据报道,PCNA-泛素融合蛋白可模拟内源性PCNA泛素化。我们发现PCNA-泛素融合蛋白的稳定表达完全或部分挽救了PCNA突变体中观察到的缺陷。一种无法形成赖氨酸63连接的多泛素链的PCNA-泛素融合蛋白的表达同样挽救了细胞周期停滞、DNA损伤敏感性、跨损伤合成减少以及MMS诱导的基因组诱变增加。模板转换绕过不受PCNA多泛素化基因敲除的影响,但在缺乏重组蛋白BRCA1或XRCC3时会减少。我们的研究发现,保护细胞免受复制停滞性DNA损伤不需要PCNA多泛素化。

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