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基因组编辑结果表明分枝杆菌NucS参与DNA错配的短补丁修复。

Genome Editing Outcomes Reveal Mycobacterial NucS Participates in a Short-Patch Repair of DNA Mismatches.

作者信息

Islam Tanjina, Josephs Eric A

机构信息

Department of Nanoscience, University of North Carolina at Greensboro, Greensboro, NC, 27401, USA.

Department of Biology, University of North Carolina at Greensboro, Greensboro, NC, 27401, USA.

出版信息

bioRxiv. 2023 Oct 23:2023.10.23.563644. doi: 10.1101/2023.10.23.563644.

Abstract

In the canonical DNA mismatch repair (MMR) mechanism in bacteria, if during replication a nucleotide is incorrectly mis-paired with the template strand, the resulting repair of this mis-pair can result in the degradation and re-synthesis of hundreds or thousands of nucleotides on the newly-replicated strand (long-patch repair). While mycobacteria, which include important pathogens such as , lack the otherwise highly-conserved enzymes required for the canonical MMR reaction, it was found that disruption of a mycobacterial mismatch-sensitive endonuclease NucS results in a hyper-mutative phenotype, which has led to the idea that NucS might be involved in a cryptic, independently-evolved DNA MMR mechanism. It has been proposed that nuclease activity at a mismatch might result in correction by homologous recombination (HR) with a sister chromatid. Using oligonucleotide recombination, which allows us to introduce mismatches during replication specifically into the genomes of a model for , we find that NucS participates in a direct repair of DNA mismatches where the patch of excised nucleotides is largely confined to within ~5 - 6 bp of the mis-paired nucleotides, which is inconsistent with mechanistic models of canonical mycobacterial HR or other double-strand break (DSB) repair reactions. The results presented provide evidence of a novel NucS-associated mycobacterial MMR mechanism occurring to regulate genetic mutations in mycobacteria.

摘要

在细菌的经典DNA错配修复(MMR)机制中,如果在复制过程中一个核苷酸与模板链错误配对,对这种错配的修复可能导致新复制链上数百或数千个核苷酸的降解和重新合成(长片段修复)。虽然分枝杆菌,包括诸如……等重要病原体,缺乏经典MMR反应所需的其他高度保守的酶,但研究发现,破坏分枝杆菌错配敏感核酸内切酶NucS会导致高突变表型,这引发了一种观点,即NucS可能参与一种隐秘的、独立进化的DNA错配修复机制。有人提出,错配处的核酸酶活性可能通过与姐妹染色单体的同源重组(HR)导致校正。利用寡核苷酸重组,其使我们能够在复制过程中特异性地将错配引入一种……模型的基因组中,我们发现NucS参与DNA错配的直接修复,其中切除的核苷酸片段在很大程度上局限于错配核苷酸的约5至6个碱基对内,这与经典分枝杆菌HR或其他双链断裂(DSB)修复反应的机制模型不一致。所呈现的结果为一种新的与NucS相关的分枝杆菌错配修复机制提供了证据,该机制发生……以调节分枝杆菌中的基因突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2517/10634747/3c36cd03186a/nihpp-2023.10.23.563644v1-f0001.jpg

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