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DNA聚合酶ζ的缺失会导致哺乳动物细胞中的染色体不稳定。

Loss of DNA polymerase zeta causes chromosomal instability in mammalian cells.

作者信息

Wittschieben John P, Reshmi Shalini C, Gollin Susanne M, Wood Richard D

机构信息

Department of Pharmacology, University of Pittsburgh Medical School and University of Pittsburgh Cancer Institute, Pittsburgh, Pennsylvania, USA.

出版信息

Cancer Res. 2006 Jan 1;66(1):134-42. doi: 10.1158/0008-5472.CAN-05-2982.

Abstract

Rev3L encodes the catalytic subunit of DNA polymerase zeta (pol zeta) in mammalian cells. In yeast, pol zeta helps cells bypass sites of DNA damage that can block replication enzymes. Targeted disruption of the mouse Rev3L gene causes lethality midway through embryonic gestation, and Rev3L-/- mouse embryonic fibroblasts (MEFs) remain in a quiescent state in culture. This suggests that pol zeta may be necessary for tolerance of endogenous DNA damage during normal cell growth. We report the generation of mitotically active Rev3L-/- MEFs on a p53-/- genetic background. Rev3L null MEFs exhibited striking chromosomal instability, with a large increase in translocation frequency. Many complex genetic aberrations were found only in Rev3L null cells. Rev3L null cells had increased chromosome numbers, most commonly near pentaploid, and double minute chromosomes were frequently found. This chromosomal instability associated with loss of a DNA polymerase activity in mammalian cells is similar to the instability associated with loss of homologous recombination capacity. Rev3L null MEFs were also moderately sensitive to mitomycin C, methyl methanesulfonate, and UV and gamma-radiation, indicating that mammalian pol zeta helps cells tolerate diverse types of DNA damage. The increased occurrence of chromosomal translocations in Rev3L-/- MEFs suggests that loss of Rev3L expression could contribute to genome instability during neoplastic transformation and progression.

摘要

Rev3L在哺乳动物细胞中编码DNA聚合酶ζ(pol ζ)的催化亚基。在酵母中,pol ζ帮助细胞绕过可阻断复制酶的DNA损伤位点。对小鼠Rev3L基因进行靶向破坏会导致胚胎妊娠中期致死,并且Rev3L基因敲除的小鼠胚胎成纤维细胞(MEF)在培养中保持静止状态。这表明pol ζ对于正常细胞生长期间内源性DNA损伤的耐受性可能是必需的。我们报告了在p53基因敲除的遗传背景下产生有丝分裂活性的Rev3L基因敲除的MEF。Rev3L基因缺失的MEF表现出显著的染色体不稳定性,易位频率大幅增加。许多复杂的基因畸变仅在Rev3L基因缺失的细胞中发现。Rev3L基因缺失的细胞染色体数目增加,最常见的是接近五倍体,并且经常发现双微体染色体。这种与哺乳动物细胞中DNA聚合酶活性丧失相关的染色体不稳定性类似于与同源重组能力丧失相关的不稳定性。Rev3L基因缺失的MEF对丝裂霉素C、甲基磺酸甲酯、紫外线和γ射线也有中度敏感性,表明哺乳动物的pol ζ帮助细胞耐受多种类型的DNA损伤。Rev3L基因敲除的MEF中染色体易位发生率增加表明Rev3L表达缺失可能在肿瘤转化和进展过程中导致基因组不稳定。

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