首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Structural Basis of Rev1-mediated Assembly of a Quaternary Vertebrate Translesion Polymerase Complex Consisting of Rev1 Heterodimeric Polymerase (Pol) ζ and Pol κ
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Structural Basis of Rev1-mediated Assembly of a Quaternary Vertebrate Translesion Polymerase Complex Consisting of Rev1 Heterodimeric Polymerase (Pol) ζ and Pol κ

机译:由Rev1异二聚体聚合酶(Pol)ζ和Polκ组成的第四季脊椎动物转化聚合酶复合物的Rev1介导组装的结构基础。

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摘要

DNA synthesis across lesions during genomic replication requires concerted actions of specialized DNA polymerases in a potentially mutagenic process known as translesion synthesis. Current models suggest that translesion synthesis in mammalian cells is achieved in two sequential steps, with a Y-family DNA polymerase (κ, η, ι, or Rev1) inserting a nucleotide opposite the lesion and with the heterodimeric B-family polymerase ζ, consisting of the catalytic Rev3 subunit and the accessory Rev7 subunit, replacing the insertion polymerase to carry out primer extension past the lesion. Effective translesion synthesis in vertebrates requires the scaffolding function of the C-terminal domain (CTD) of Rev1 that interacts with the Rev1-interacting region of polymerases κ, η, and ι and with the Rev7 subunit of polymerase ζ. We report the purification and structure determination of a quaternary translesion polymerase complex consisting of the Rev1 CTD, the heterodimeric Pol ζ complex, and the Pol κ Rev1-interacting region. Yeast two-hybrid assays were employed to identify important interface residues of the translesion polymerase complex. The structural elucidation of such a quaternary translesion polymerase complex encompassing both insertion and extension polymerases bridged by the Rev1 CTD provides the first molecular explanation of the essential scaffolding function of Rev1 and highlights the Rev1 CTD as a promising target for developing novel cancer therapeutics to suppress translesion synthesis. Our studies support the notion that vertebrate insertion and extension polymerases could structurally cooperate within a megatranslesion polymerase complex (translesionsome) nucleated by Rev1 to achieve efficient lesion bypass without incurring an additional switching mechanism.
机译:在基因组复制过程中,跨病变的DNA合成需要特殊的DNA聚合酶在潜在的诱变过程(称为跨病变合成)中发挥协同作用。当前模型表明,哺乳动物细胞中的跨病变合成是通过两个连续步骤完成的,Y族DNA聚合酶(κ,η,ι或Rev1)插入与病变相反的核苷酸,异二聚体B族聚合酶ζ催化的Rev3亚基和辅助Rev7亚基的一部分,替换插入聚合酶以进行引物延伸穿过病变。在脊椎动物中有效的跨病变合成需要Rev1的C末端结构域(CTD)的支架功能,该功能与聚合酶κ,η和η的Rev1相互作用区域以及聚合酶ζ的Rev7亚基相互作用。我们报告了由Rev1 CTD,异二聚体Polζ复合物和PolκRev1相互作用区域组成的季转移聚合酶复合物的纯化和结构测定。酵母双杂交测定法被用于鉴定跨病变聚合酶复合物的重要界面残基。包含通过Rev1 CTD桥接的插入和延伸聚合酶的这种四级跨病变聚合酶复合物的结构解析为Rev1的基本支架功能提供了第一个分子解释,并突出了Rev1 CTD作为开发新型癌症疗法抑制跨转录的有希望的靶标合成。我们的研究支持这样一种观点,即脊椎动物的插入和延伸聚合酶可以在Rev1核化的大病变聚合酶复合物(跨病变体)内进行结构上的协作,以实现有效的病变旁路,而不会引起额外的转换机制。

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