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首页> 外文期刊>Nucleic Acids Research >Roles of Saccharomyces cerevisiae DNA polymerases Polη and Polζ in response to irradiation by simulated sunlight
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Roles of Saccharomyces cerevisiae DNA polymerases Polη and Polζ in response to irradiation by simulated sunlight

机译:酿酒酵母DNA聚合酶Polη和Polζ在模拟阳光照射下的作用

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Sunlight causes lesions in DNA that if unrepaired and inaccurately replicated by DNA polymerases yield mutations that result in skin cancer in humans. Two enzymes involved in translesion synthesis (TLS) of UV-induced photolesions are DNA polymerase η (Polη) and polymerase ζ(Polζ), encoded by the RAD30A and REV3 genes, respectively. Previous studies have investigated the TLS roles of these polymerases in human and yeast cells irradiated with monochromatic, short wavelength UVC radiation (254 nm). However, less is known about cellular responses to solar radiation, which is of higher and mixed wavelengths (310-1100 nm) and produces a different spectrum of DNA lesions, including Dewar photoproducts and oxidative lesions. Here we report on the comparative cytotoxic and mutagenic effects of simulated sunlight (SSL) and UVC radiation on yeast wild-type, rad30Δ, rev3Δ and rev3Δ rad30Δ strains. The results with SSL support several previous interpretations on the roles of these two polymerases in TLS of photodimers and (6-4) photoproducts derived from studies with UVC. They further suggest that Polη participates in the non-mutagenic bypass of SSL-dependent cytosine-containing Dewar photoproducts and 8-oxoguanine, while Polζ is mainly responsible for the mutagenic bypass of all types of Dewar photoproducts. They also suggest that in the absence of Polζ, Polη contributes to UVC- and SSL-induced mutagenesis, possibly by the bypass of photodimers containing deaminated cytosine.
机译:阳光导致DNA损伤,如果DNA聚合酶对其进行修复和错误复制,则会产生突变,从而导致人类皮肤癌。紫外线诱导的光损伤的跨损伤合成(TLS)涉及的两种酶分别是RAD30A和REV3基因编码的DNA聚合酶η(Polη)和聚合酶ζ(Polζ)。以前的研究已经研究了这些聚合酶在单色和短波长UVC辐射(254 nm)照射下的人和酵母细胞中的TLS作用。然而,人们对细胞对太阳辐射的反应知之甚少,该波长具有较高且混合的波长(310-1100 nm),并产生不同光谱的DNA损伤,包括杜瓦光产物和氧化损伤。在这里,我们报告了模拟阳光(SSL)和UVC辐射对酵母野生型rad30Δ,rev3Δ和rev3Δrad30Δ菌株的比较细胞毒性和诱变作用。 SSL的结果支持了先前关于这两种聚合酶在光二聚体和(6-4)光产物的TLS中的作用的几种解释,这些光聚合来自UVC研究。他们进一步表明,Polη参与了SSL依赖的含胞嘧啶的杜瓦光产物和8-氧鸟嘌呤的非诱变旁路,而Polζ主要负责所有类型的杜瓦光产物的诱变旁路。他们还暗示,在缺少Polζ的情况下,Polη可能通过绕过含有脱氨基胞嘧啶的光二聚体来促进UVC和SSL诱导的诱变。

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