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在缺乏DNA聚合酶η的人类细胞中,跨TT环丁烷嘧啶二聚体而非TT 6-4光产物的跨损伤DNA合成效率降低且致突变性增加。

Reduced efficiency and increased mutagenicity of translesion DNA synthesis across a TT cyclobutane pyrimidine dimer, but not a TT 6-4 photoproduct, in human cells lacking DNA polymerase eta.

作者信息

Hendel Ayal, Ziv Omer, Gueranger Quentin, Geacintov Nicholas, Livneh Zvi

机构信息

Department of Biological Chemistry, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

DNA Repair (Amst). 2008 Oct 1;7(10):1636-46. doi: 10.1016/j.dnarep.2008.06.008. Epub 2008 Aug 3.

Abstract

Xeroderma pigmentosum variant (XPV) patients carry germ-line mutations in DNA polymerase eta (poleta), a major translesion DNA synthesis (TLS) polymerase, and exhibit severe sunlight sensitivity and high predisposition to skin cancer. Using a quantitative TLS assay system based on gapped plasmids we analyzed TLS across a site-specific TT CPD (thymine-thymine cyclobutane pyrimidine dimer) or TT 6-4 PP (thymine-thymine 6-4 photoproduct) in three pairs of poleta-proficient and deficient human cells. TLS across the TT CPD lesion was reduced by 2.6-4.4-fold in cells lacking poleta, and exhibited a strong 6-17-fold increase in mutation frequency at the TT CPD. All targeted mutations (74%) in poleta-deficient cells were opposite the 3'T of the CPD, however, a significant fraction (23%) were semi-targeted to the nearest nucleotides flanking the CPD. Deletions and insertions were observed at a low frequency, which increased in the absence of poleta, consistent with the formation of double strand breaks due to defective TLS. TLS across TT 6-4 PP was about twofold lower than across CPD, and was marginally reduced in poleta-deficient cells. TLS across TT 6-4 PP was highly mutagenic (27-63%), with multiple mutations types, and no significant difference between cells with or without poleta. Approximately 50% of the mutations formed were semi-targeted, of which 84-93% were due to the insertion of an A opposite the template G 5' to the 6-4 PP. These results, which are consistent with the UV hyper-mutability of XPV cells, highlight the critical role of poleta in error-free TLS across CPD in human cells, and suggest a potential involvement, although minor, of poleta in TLS across 6-4 PP under some conditions.

摘要

着色性干皮病变异型(XPV)患者在DNA聚合酶η(polη)中携带种系突变,polη是一种主要的跨损伤DNA合成(TLS)聚合酶,患者表现出对阳光极度敏感且极易患皮肤癌。我们使用基于缺口质粒的定量TLS检测系统,分析了三对具有和缺乏polη的人类细胞中跨位点特异性胸腺嘧啶-胸腺嘧啶环丁烷嘧啶二聚体(TT CPD)或胸腺嘧啶-胸腺嘧啶6-4光产物(TT 6-4 PP)的TLS情况。在缺乏polη的细胞中,跨TT CPD损伤的TLS减少了2.6至4.4倍,并且在TT CPD处的突变频率显著增加了6至17倍。在缺乏polη的细胞中,所有靶向突变(74%)都位于CPD的3'T相对位置,然而,相当一部分(23%)是半靶向于CPD侧翼最近的核苷酸。观察到缺失和插入的频率较低,在缺乏polη时会增加,这与由于有缺陷的TLS导致双链断裂的形成一致。跨TT 6-4 PP的TLS比跨CPD的TLS低约两倍,并且在缺乏polη的细胞中略有降低。跨TT 6-4 PP的TLS具有高度致突变性(27 - 63%),有多种突变类型,并且在有或没有polη的细胞之间没有显著差异。形成的突变中约50%是半靶向的,其中84 - 93%是由于在模板G 5'至6-4 PP相对位置插入了一个A。这些结果与XPV细胞的紫外线高突变性一致,突出了polη在人类细胞中跨CPD进行无差错TLS中的关键作用,并表明在某些条件下,polη在跨6-4 PP的TLS中可能有潜在参与,尽管作用较小。

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