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脊椎动物的DNA损伤耐受需要REV1的C末端,但不需要其BRCT或转移酶结构域。

Vertebrate DNA damage tolerance requires the C-terminus but not BRCT or transferase domains of REV1.

作者信息

Ross Anna-Laura, Simpson Laura J, Sale Julian E

机构信息

Medical Research Council Laboratory of Molecular Biology Hills Road, Cambridge, CB2 2QH, UK.

出版信息

Nucleic Acids Res. 2005 Mar 1;33(4):1280-9. doi: 10.1093/nar/gki279. Print 2005.

Abstract

REV1 is central to the DNA damage response of eukaryotes through an as yet poorly understood role in translesion synthesis. REV1 is a member of the Y-type DNA polymerase family and is capable of in vitro deoxycytidyl transferase activity opposite a range of damaged bases. However, non-catalytic roles for REV1 have been suggested by the Saccharomyces cerevisiae rev1-1 mutant, which carries a point mutation in the N-terminal BRCT domain, and the recently demonstrated ability of the mammalian protein to interact with each of the other translesion polymerases via its extreme C-terminus. Here, we show that a region adjacent to this polymerase interacting domain mediates an interaction with PCNA. These C-terminal domains of REV1 are necessary, although not sufficient, for effective tolerance of DNA damage in the avian cell line DT40, while the BRCT domain and transferase activity are not directly required. Together these data provide strong support for REV1 playing an important non-catalytic role in coordinating translesion synthesis. Further, unlike in budding yeast, rad18 is not epistatic to rev1 for DNA damage tolerance suggesting that REV1 and RAD18 play largely independent roles in the control of vertebrate translesion synthesis.

摘要

REV1在跨损伤合成中发挥着尚未完全明确的作用,对于真核生物的DNA损伤反应至关重要。REV1是Y型DNA聚合酶家族的成员,能够在体外对一系列受损碱基进行脱氧胞苷转移酶活性反应。然而,酿酒酵母rev1-1突变体(其N端BRCT结构域存在点突变)以及最近所证实的哺乳动物蛋白通过其极端C端与其他跨损伤聚合酶相互作用的能力,提示了REV1存在非催化作用。在此,我们表明,与该聚合酶相互作用结构域相邻的一个区域介导了与增殖细胞核抗原(PCNA)的相互作用。REV1的这些C端结构域对于禽细胞系DT40中DNA损伤的有效耐受是必要的(尽管并不充分),而BRCT结构域和转移酶活性并非直接必需。这些数据共同为REV1在协调跨损伤合成中发挥重要的非催化作用提供了有力支持。此外,与芽殖酵母不同,在DNA损伤耐受方面,rad18对rev1不存在上位效应,这表明REV1和RAD18在脊椎动物跨损伤合成的控制中发挥着 largely 独立的作用。 (注:“largely”原英文有误,推测可能是“largely”,这里按此翻译,若有误请根据正确内容调整)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/818a/552965/036424440b32/gki279f1.jpg

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