Structures of LIG1 engaging with mutagenic mismatches inserted by polβ in base excision repair

Structures of LIG1 engaging with mutagenic mismatches inserted by polβ in base excision repair
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DOI:
10.1101/2022.01.14.473406
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发表时间:
2022-01
期刊:
bioRxiv
影响因子:
--
通讯作者:
Melike Çağlayan;Qun Tang;R. McKenna
Melike Çağlayan;Qun Tang;R. McKenna
中科院分区:
其他
文献类型:
--
作者:
Melike Çağlayan;Qun Tang;R. McKenna

文献摘要

相似文献

DNA 连接酶 I (LIG1) 催化 DNA 聚合酶 (pol) β 间隙填充后的最终连接步骤,polβ 错误的核苷酸插入会在碱基切除修复 (BER) 途径的下游步骤中产生末端不匹配的切口修复中间体。然而,LIG1 如何在原子分辨率下区分诱变 3' 错配仍不清楚。在这里,我们确定了具有 G:T 和 A:C 错配的 LIG1/切口 DNA 复合物的 X 射线结构,并发现了有利于或阻止碱基替换错误连接的连接酶策略。我们的结构表明,LIG1 活性位点可以以与 A:T 碱基配对相似的构象容纳 G:T 错配,而在 3' 链上存在 A:C 错配的情况下,在连接反应的初始步骤中,它保留在 LIG1-腺苷酸中间体中。此外,我们还分别展示了 3' 预插入 dG:T 和 dA:C 错配的切口 DNA 底物的诱变连接和异常切口密封。最后,我们证明了 AP-核酸内切酶 1 (APE1) 作为一种补偿性校对酶,在错配去除和 DNA 连接过程中与 LIG1 相互作用和协调。我们的总体发现和连接酶/切口 DNA 结构提供了最终 BER 步骤中准确与诱变结果的特征,其中包括 polβ、LIG1 和 APE1 的多蛋白复合物可以保持准确的修复。
DNA ligase I (LIG1) catalyzes final ligation step following DNA polymerase (pol) β gap filling and an incorrect nucleotide insertion by polβ creates a nick repair intermediate with mismatched end at the downstream steps of base excision repair (BER) pathway. Yet, how LIG1 discriminates against the mutagenic 3′-mismatches at atomic resolution remains undefined. Here, we determined X-ray structures of LIG1/nick DNA complexes with G:T and A:C mismatches and uncovered the ligase strategies that favor or deter ligation of base substitution errors. Our structures revealed that LIG1 active site can accommodate G:T mismatch in a similar conformation with A:T base pairing, while it stays in the LIG1-adenylate intermediate during initial step of ligation reaction in the presence of A:C mismatch at 3′-strand. Moreover, we showed mutagenic ligation and aberrant nick sealing of the nick DNA substrates with 3′-preinserted dG:T and dA:C mismatches, respectively. Finally, we demonstrated that AP-Endonuclease 1 (APE1), as a compensatory proofreading enzyme, interacts and coordinates with LIG1 during mismatch removal and DNA ligation. Our overall findings and ligase/nick DNA structures provide the features of accurate versus mutagenic outcomes at the final BER steps where a multi-protein complex including polβ, LIG1, and APE1 can maintain accurate repair.