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高保真 DNA 连接可在 DNA 复制过程中强制实现准确的 Okazaki 片段成熟。

High-fidelity DNA ligation enforces accurate Okazaki fragment maturation during DNA replication.

机构信息

Genome Integrity and Structural Biology Laboratory, National Institute of Environmental Health Sciences, US National Institutes of Health, Department of Health and Human Services, 111 TW Alexander Drive, Research Triangle Park, NC, 27709, USA.

出版信息

Nat Commun. 2021 Jan 20;12(1):482. doi: 10.1038/s41467-020-20800-1.

Abstract

DNA ligase 1 (LIG1, Cdc9 in yeast) finalizes eukaryotic nuclear DNA replication by sealing Okazaki fragments using DNA end-joining reactions that strongly discriminate against incorrectly paired DNA substrates. Whether intrinsic ligation fidelity contributes to the accuracy of replication of the nuclear genome is unknown. Here, we show that an engineered low-fidelity LIG1 variant confers a novel mutator phenotype in yeast typified by the accumulation of single base insertion mutations in homonucleotide runs. The rate at which these additions are generated increases upon concomitant inactivation of DNA mismatch repair, or by inactivation of the Fen1 Okazaki fragment maturation (OFM) nuclease. Biochemical and structural data establish that LIG1 normally avoids erroneous ligation of DNA polymerase slippage products, and this protection is compromised by mutation of a LIG1 high-fidelity metal binding site. Collectively, our data indicate that high-fidelity DNA ligation is required to prevent insertion mutations, and that this may be particularly critical following strand displacement synthesis during the completion of OFM.

摘要

DNA 连接酶 1(LIG1,在酵母中为 Cdc9)通过使用强烈区分不正确配对 DNA 底物的 DNA 末端连接反应来完成真核核 DNA 复制,从而封闭 Okazaki 片段。内在的连接保真度是否有助于核基因组复制的准确性尚不清楚。在这里,我们表明,一种经过工程改造的低保真度 LIG1 变体在酵母中赋予了一种新的突变体表型,其特征是在同聚核苷酸序列中积累单个碱基插入突变。这些添加的生成速率在 DNA 错配修复同时失活时或 Fen1 Okazaki 片段成熟(OFM)核酸酶失活时增加。生化和结构数据表明,LIG1 通常避免错误连接 DNA 聚合酶滑动产物,并且这种保护会因 LIG1 高保真度金属结合位点的突变而受损。总的来说,我们的数据表明,高保真度 DNA 连接对于防止插入突变是必需的,并且在 OFM 完成期间进行链置换合成后,这可能特别关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1921/7817679/0112b7363907/41467_2020_20800_Fig1_HTML.jpg

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