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在碱基切除修复途径的下游步骤中,LIG1和LIG3α在8-氧代鸟嘌呤(8-oxoG)绕过过程中对polβ错配插入产物进行诱变连接。

Mutagenic ligation of polβ mismatch insertion products during 8-oxoG bypass by LIG1 and LIG3α at the downstream steps of base excision repair pathway.

作者信息

Lee Kar Men, Castro Erick, Ratcliffe Jacob E, Çağlayan Melike

出版信息

bioRxiv. 2024 Oct 25:2024.10.23.619805. doi: 10.1101/2024.10.23.619805.

Abstract

Base excision repair (BER) maintains genome integrity by fixing oxidized bases that could be formed when reactive oxygen species attack directly on the DNA. We previously reported the importance of a proper coordination at the downstream steps involving gap filling by DNA polymerase (pol) β and subsequent nick sealing by DNA ligase (LIG) 1 or 3α. Yet, how the fidelity of 8-oxoG bypass by polβ affects the efficiency of ligation remains unclear. Here, we show that LIG1 can seal nick products of polβ after both dATP and dCTP insertions during 8- oxoG bypass, while ribonucleotide insertions completely diminish the repair coordination with both ligases, highlighting a critical role for nucleotide selectivity in maintaining BER accuracy. Furthermore, our results demonstrate that LIG3α exhibits an inability to ligate nicks of polβ dCTP:8-oxoG insertion or with preinserted 3'-dC:8-oxoG. Finally, AP-Endonuclease 1 (APE1) proofreads nick repair intermediates containing 3'-dA/rA and 3'-dC/rC mismatches templating 8-oxoG. Overall, our findings provide a mechanistic insight into how the dual coding potential of the oxidative lesion and identity of BER ligase govern mutagenic error-free repair outcomes at the final steps and how the ribonucleotide challenge compromises the BER coordination leading to the formation of deleterious repair intermediates.

摘要

碱基切除修复(BER)通过修复活性氧直接攻击DNA时可能形成的氧化碱基来维持基因组完整性。我们之前报道了在下游步骤中进行适当协调的重要性,这些步骤包括DNA聚合酶(pol)β填充缺口以及随后DNA连接酶(LIG)1或3α封闭切口。然而,polβ绕过8-氧代鸟嘌呤(8-oxoG)的保真度如何影响连接效率仍不清楚。在此,我们表明,在8-oxoG绕过过程中,dATP和dCTP插入后,LIG1可以封闭polβ的切口产物,而核糖核苷酸插入则完全破坏了与两种连接酶的修复协调,这突出了核苷酸选择性在维持BER准确性中的关键作用。此外,我们的结果表明,LIG3α无法连接polβ dCTP:8-oxoG插入或预先插入的3'-dC:8-oxoG的切口。最后,脱嘌呤/脱嘧啶内切核酸酶1(APE1)校对含有3'-dA/rA和3'-dC/rC错配且以8-oxoG为模板的切口修复中间体。总体而言,我们的研究结果为氧化损伤的双重编码潜力和BER连接酶的特性如何在最后步骤控制诱变无差错修复结果以及核糖核苷酸挑战如何损害BER协调导致有害修复中间体形成提供了机制上的见解。

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