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DNA聚合酶ζ的特性:REV7是一种推测参与跨损伤DNA合成和细胞周期调控的蛋白质。

The property of DNA polymerase zeta: REV7 is a putative protein involved in translesion DNA synthesis and cell cycle control.

作者信息

Murakumo Yoshiki

机构信息

Department of Pathology, Nagoya University Graduate School of Medicine, 65 Tsurumai-cho, Showa-ku, Nagoya 466-8550, Japan.

出版信息

Mutat Res. 2002 Dec 29;510(1-2):37-44. doi: 10.1016/s0027-5107(02)00250-6.

Abstract

Translesion DNA synthesis (TLS) is an important damage tolerance system which rescues cells from severe injuries caused by DNA damage. Specialized low fidelity DNA polymerases in this system synthesize DNA past lesions on the template DNA strand, that replicative DNA polymerases are usually unable to pass through. However, in compensation for cell survival, most polymerases in this system are potentially mutagenic and sometimes introduce mutations in the next generation. In yeast Saccharomyces cerevisiae (S. cerevisiae), DNA polymerase zeta, which consists of Rev3 and Rev7 proteins, and Rev1 are known to be involved in most damage-induced and spontaneous mutations. The human homologs of S. cerevisiae REV1, REV3, and REV7 were identified, and it is revealed that the human REV proteins have similar functions to their yeast counterparts, however, a large part of the mechanisms of mutagenesis employing REV proteins are still unclear. Recently, the new findings about REV proteins were reported, which showed that REV7 interacts not only with REV3 but also with REV1 in human and that REV7 is involved in cell cycle control in Xenopus. These findings give us a new point of view for further investigation about REV proteins. Recent studies of REV proteins are summarized and several points are discussed.

摘要

跨损伤DNA合成(TLS)是一种重要的损伤耐受系统,可使细胞从DNA损伤导致的严重损伤中恢复。该系统中的特殊低保真度DNA聚合酶能跨越模板DNA链上的损伤部位合成DNA,而复制性DNA聚合酶通常无法通过这些损伤部位。然而,作为对细胞存活的一种补偿,该系统中的大多数聚合酶都具有潜在的致突变性,有时会在下一代中引入突变。在酿酒酵母(S. cerevisiae)中,由Rev3和Rev7蛋白组成的DNA聚合酶ζ以及Rev1已知参与了大多数由损伤诱导的和自发的突变。酿酒酵母REV1、REV3和REV7的人类同源物已被鉴定出来,并且发现人类REV蛋白与其酵母对应物具有相似的功能,然而,利用REV蛋白的诱变机制在很大程度上仍不清楚。最近,有关于REV蛋白的新发现被报道,这些发现表明REV7在人类中不仅与REV3相互作用,还与REV1相互作用,并且REV7参与非洲爪蟾的细胞周期调控。这些发现为进一步研究REV蛋白提供了新的视角。本文总结了REV蛋白的近期研究并讨论了几个要点。

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