An archaeal Cas3 protein facilitates rapid recovery from DNA damage.

microLife Pub Date : 2023-01-01 DOI:10.1093/femsml/uqad007
Guy Miezner, Israela Turgeman-Grott, Kelly M Zatopek, Andrew F Gardner, Leah Reshef, Deepak K Choudhary, Martina Alstetter, Thorsten Allers, Anita Marchfelder, Uri Gophna
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Abstract

CRISPR-Cas systems provide heritable acquired immunity against viruses to archaea and bacteria. Cas3 is a CRISPR-associated protein that is common to all Type I systems, possesses both nuclease and helicase activities, and is responsible for degradation of invading DNA. Involvement of Cas3 in DNA repair had been suggested in the past, but then set aside when the role of CRISPR-Cas as an adaptive immune system was realized. Here we show that in the model archaeon Haloferax volcanii a cas3 deletion mutant exhibits increased resistance to DNA damaging agents compared with the wild-type strain, but its ability to recover quickly from such damage is reduced. Analysis of cas3 point mutants revealed that the helicase domain of the protein is responsible for the DNA damage sensitivity phenotype. Epistasis analysis indicated that cas3 operates with mre11 and rad50 in restraining the homologous recombination pathway of DNA repair. Mutants deleted for Cas3 or deficient in its helicase activity showed higher rates of homologous recombination, as measured in pop-in assays using non-replicating plasmids. These results demonstrate that Cas proteins act in DNA repair, in addition to their role in defense against selfish elements and are an integral part of the cellular response to DNA damage.

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一种古细菌Cas3蛋白促进DNA损伤的快速恢复。
CRISPR-Cas系统为古生菌和细菌提供可遗传的获得性免疫。Cas3是所有I型系统中常见的一种crispr相关蛋白,具有核酸酶和解旋酶活性,并负责降解入侵DNA。过去曾有人提出Cas3参与DNA修复,但当人们意识到CRISPR-Cas作为适应性免疫系统的作用时,就把它搁置一边了。本研究表明,在古菌模型中,与野生型菌株相比,cas3缺失突变体对DNA损伤剂的抵抗力增强,但其从这种损伤中快速恢复的能力降低。对cas3点突变体的分析表明,该蛋白的解旋酶结构域与DNA损伤敏感性表型有关。上位分析表明,cas3与mre11和rad50共同抑制DNA修复的同源重组途径。在使用非复制质粒的弹出式分析中,Cas3缺失或解旋酶活性不足的突变体显示出更高的同源重组率。这些结果表明,Cas蛋白在DNA修复中起作用,除了它们在防御自私元素方面的作用外,还是细胞对DNA损伤反应的一个组成部分。
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