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真核生物 Pif1 解旋酶使用保守的楔子解开 G-四链体和双链 DNA。

Eukaryotic Pif1 helicase unwinds G-quadruplex and dsDNA using a conserved wedge.

机构信息

Institute of Molecular and Cell Biology (IMCB), Agency for Science, Technology and Research (A*STAR), Proteos, Singapore, Republic of Singapore.

Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Little Rock, AR, USA.

出版信息

Nat Commun. 2024 Jul 19;15(1):6104. doi: 10.1038/s41467-024-50575-8.

Abstract

G-quadruplexes (G4s) formed by guanine-rich nucleic acids induce genome instability through impeding DNA replication fork progression. G4s are stable DNA structures, the unfolding of which require the functions of DNA helicases. Pif1 helicase binds preferentially to G4 DNA and plays multiple roles in maintaining genome stability, but the mechanism by which Pif1 unfolds G4s is poorly understood. Here we report the co-crystal structure of Saccharomyces cerevisiae Pif1 (ScPif1) bound to a G4 DNA with a 5' single-stranded DNA (ssDNA) segment. Unlike the Thermus oshimai Pif1-G4 structure, in which the 1B and 2B domains confer G4 recognition, ScPif1 recognizes G4 mainly through the wedge region in the 1A domain that contacts the 5' most G-tetrad directly. A conserved Arg residue in the wedge is required for Okazaki fragment processing but not for mitochondrial function or for suppression of gross chromosomal rearrangements. Multiple substitutions at this position have similar effects on resolution of DNA duplexes and G4s, suggesting that ScPif1 may use the same wedge to unwind G4 and dsDNA. Our results reveal the mechanism governing dsDNA unwinding and G4 unfolding by ScPif1 helicase that can potentially be generalized to other eukaryotic Pif1 helicases and beyond.

摘要

四链体(G4s)由富含鸟嘌呤的核酸形成,通过阻碍 DNA 复制叉的推进来诱导基因组不稳定。G4s 是稳定的 DNA 结构,其展开需要 DNA 解旋酶的功能。Pif1 解旋酶优先结合 G4 DNA,并在维持基因组稳定性方面发挥多种作用,但 Pif1 展开 G4 的机制尚不清楚。在这里,我们报告了与具有 5'单链 DNA(ssDNA)片段的 G4 DNA 结合的酿酒酵母 Pif1(ScPif1)的共晶结构。与 Thermus oshimai Pif1-G4 结构不同,后者的 1B 和 2B 结构域赋予 G4 识别功能,ScPif1 主要通过 1A 结构域中的楔形区域识别 G4,该区域直接与 5'最 G-四联体接触。楔形区域中的保守 Arg 残基对于冈崎片段加工是必需的,但对于线粒体功能或抑制大染色体重排则不是必需的。该位置的多个取代对 DNA 双链体和 G4 的分辨率具有相似的影响,这表明 ScPif1 可能使用相同的楔形区域来解开 G4 和 dsDNA。我们的结果揭示了 ScPif1 解旋酶控制 dsDNA 解旋和 G4 展开的机制,这可能被推广到其他真核 Pif1 解旋酶甚至更远。

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