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DNA 聚合酶 λ 通过 Watson-Crick 破坏 N1-甲基-脱氧腺嘌呤加合物与 DNA 聚合酶 ζ 一起促进无错误复制。

DNA polymerase λ promotes error-free replication through Watson-Crick impairing N1-methyl-deoxyadenosine adduct in conjunction with DNA polymerase ζ.

机构信息

Department of Biochemistry and Molecular Biology, University of Texas Medical Branch, Galveston, Texas, USA.

Department of Biochemistry and Molecular Biology, University of Texas Medical Branch, Galveston, Texas, USA.

出版信息

J Biol Chem. 2021 Jul;297(1):100868. doi: 10.1016/j.jbc.2021.100868. Epub 2021 Jun 10.

Abstract

In a previous study, we showed that replication through the N1-methyl-deoxyadenosine (1-MeA) adduct in human cells is mediated via three different Polι/Polθ, Polη, and Polζ-dependent pathways. Based on biochemical studies with these Pols, in the Polι/Polθ pathway, we inferred a role for Polι in the insertion of a nucleotide (nt) opposite 1-MeA and of Polθ in extension of synthesis from the inserted nt; in the Polη pathway, we inferred that this Pol alone would replicate through 1-MeA; in the Polζ pathway, however, the Pol required for inserting an nt opposite 1-MeA had remained unidentified. In this study, we provide biochemical and genetic evidence for a role for Polλ in inserting the correct nt T opposite 1-MeA, from which Polζ would extend synthesis. The high proficiency of purified Polλ for inserting a T opposite 1-MeA implicates a role for Polλ-which normally uses W-C base pairing for DNA synthesis-in accommodating 1-MeA in a syn confirmation and forming a Hoogsteen base pair with T. The potential of Polλ to replicate through DNA lesions by Hoogsteen base pairing adds another novel aspect to Polλ's role in translesion synthesis in addition to its role as a scaffolding component of Polζ. We discuss how the action mechanisms of Polλ and Polζ could be restrained to inserting a T opposite 1-MeA and extending synthesis thereafter, respectively.

摘要

在之前的研究中,我们表明人类细胞中的 N1-甲基-脱氧腺苷(1-MeA)加合物的复制是通过三种不同的 Polι/Polθ、Polη 和 Polζ 依赖性途径介导的。基于对这些 Pol 的生化研究,在 Polι/Polθ 途径中,我们推断 Polι 在插入与 1-MeA 相对的核苷酸(nt)以及 Polθ 在从插入的 nt 延伸合成中起作用;在 Polη 途径中,我们推断只有这种 Pol 可以通过 1-MeA 进行复制;然而,在 Polζ 途径中,用于插入与 1-MeA 相对的 nt 的 Pol 仍未被鉴定。在这项研究中,我们提供了生化和遗传证据,证明 Polλ 在插入正确的 nt T 与 1-MeA 相对,然后 Polζ 将从这个 nt 延伸合成。纯化的 Polλ 具有很高的插入与 1-MeA 相对的 T 的效率,这表明 Polλ 在形成 Hoogsteen 碱基对与 T 时,可能会将 1-MeA 纳入顺式构象,并利用其用于 DNA 合成的 W-C 碱基配对。Polλ 通过 Hoogsteen 碱基配对复制 DNA 损伤的潜力除了作为 Polζ 跨损伤合成的支架组件外,为 Polλ 在跨损伤合成中的作用增加了另一个新的方面。我们讨论了 Polλ 和 Polζ 的作用机制如何分别被限制为插入与 1-MeA 相对的 T 并随后延伸合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b85b/8260881/a7111c11c457/gr1.jpg

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