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Translesion synthesis of acetylaminofluorene-dG adducts by DNA polymerase ζ is stimulated by yeast Rev1 protein

机译:酵母Rev1蛋白刺激DNA聚合酶ζ跨膜合成乙酰氨基芴-dG加合物

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Translesion synthesis is an important mechanism in response to unrepaired DNA lesions during replication. The DNA polymerase ζ (Polζ) mutagenesis pathway is a major error-prone translesion synthesis mechanism requiring Polζ and Rev1. In addition to its dCMP transferase, a non-catalytic function of Rev1 is suspected in cellular response to certain types of DNA lesions. However, it is not well understood about the non-catalytic function of Rev1 in translesion synthesis. We have analyzed the role of Rev1 in translesion synthesis of an acetylaminofluorene (AAF)-dG DNA adduct. Purified yeast Rev1 was essentially unresponsive to a template AAF-dG DNA adduct, in contrast to its efficient C insertion opposite a template 1,N~6-ethenoadenine adduct. Purified yeast Polζ was very inefficient in the bypass of the AAF-dG adduct. Combining Rev1 and Polζ, however, led to a synergistic effect on translesion synthesis. Rev1 protein enhanced Polζ-catalyzed nucleotide insertion opposite the AAF-dG adduct and strongly stimulated Polζ-catalyzed extension from opposite the lesion. Rev1 also stimulated the deficient synthesis by Polζ at the very end of undamaged DNA templates. Deleting the C-terminal 205 aa of Rev1 did not affect its dCMP transferase activity, but abolished its stimulatory activity on Polζ-catalyzed extension from opposite the AAF-dG adduct. These results suggest that translesion synthesis of AAF-dG adducts by Polζ is stimulated by Rev1 protein in yeast. Consistent with the in vitro results, both Polζ and Rev1 were found to be equally important for error-prone translesion synthesis across from AAF-dG DNA adducts in yeast cells.
机译:跨病变合成是对复制过程中未修复的DNA病变作出反应的重要机制。 DNA聚合酶ζ(Polζ)诱变途径是需要Polζ和Rev1的主要易错转移合成机制。除了其dCMP转移酶外,还怀疑Rev1的非催化功能在细胞对某些类型的DNA损伤的反应中。但是,Rev1在跨病变合成中的非催化功能尚不为人所知。我们已经分析了Rev1在乙酰氨基芴(AAF)-dG DNA加合物的跨病变合成中的作用。纯化的酵母Rev1基本上对模板AAF-dG DNA加合物无反应,与其在模板1,N〜6-乙炔腺嘌呤加合物对面的有效C插入相反。纯化的酵母Polζ在绕过AAF-dG加合物时效率非常低。但是,将Rev1和Polζ结合使用,可以对跨病变的合成产生协同作用。 Rev1蛋白增强了与AAF-dG加合物相对的Polζ催化的核苷酸插入,并从病变的对侧强烈刺激了Polζ催化的延伸。 Rev1还在未损坏的DNA模板的最后刺激了Polζ的合成不足。删除Rev1的C端205 aa不会影响dCMP转移酶的活性,但会从对AAF-dG加合物的相反方向上取消其对Polζ催化延伸的刺激活性。这些结果表明,酵母中的Rev1蛋白刺激了Polζ的AAF-dG加合物的跨病变合成。与体外结果一致,Polζ和Rev1对酵母细胞中AAF-dG DNA加合物中易于出错的转录合成都同样重要。

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