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体外 pAgo 蛋白对 DNA 修饰的感应。

Sensing of DNA modifications by pAgo proteins in vitro.

机构信息

Institute of Gene Biology, Russian Academy of Sciences, Moscow, 119334, Russia.

Institute of Chemical Biology and Fundamental Medicine, SB RAS, Novosibirsk, 630090, Russia.

出版信息

Biochimie. 2024 May;220:39-47. doi: 10.1016/j.biochi.2023.12.006. Epub 2023 Dec 19.

Abstract

Many prokaryotic Argonaute (pAgo) proteins act as programmable nucleases that use small guide DNAs for recognition and cleavage of complementary target DNA. Recent studies suggested that pAgos participate in cell defense against invader DNA and may also be involved in other genetic processes, including DNA replication and repair. The ability of pAgos to recognize specific targets potentially make them an invaluable tool for DNA manipulations. Here, we demonstrate that DNA-guided DNA-targeting pAgo nucleases from three bacterial species, DloAgo from Dorea longicatena, CbAgo from Clostridium butyricum and KmAgo from Kurthia massiliensis, can sense site-specific modifications in the target DNA, including 8-oxoguanine, thymine glycol, ethenoadenine and pyrimidine dimers. The effects of DNA modifications on the activity of pAgos strongly depend on their positions relative to the site of cleavage and are comparable to or exceed the effects of guide-target mismatches at corresponding positions. For all tested pAgos, the strongest effects are observed when DNA lesions are located at the cleavage position. The results demonstrate that DNA cleavage by pAgos is strongly affected by DNA modifications, thus making possible their use as sensors of DNA damage.

摘要

许多原核 Argonaute (pAgo) 蛋白作为可编程核酸酶,利用小的引导 DNA 识别和切割互补的靶 DNA。最近的研究表明,pAgos 参与细胞对入侵 DNA 的防御,也可能参与其他遗传过程,包括 DNA 复制和修复。pAgos 识别特定靶标的能力使它们成为 DNA 操作的宝贵工具。在这里,我们证明来自三种细菌的 DNA 引导的 DNA 靶向 pAgo 核酸酶,即来自 Dorea longicatena 的 DloAgo、来自 Clostridium butyricum 的 CbAgo 和来自 Kurthia massiliensis 的 KmAgo,能够感知靶 DNA 中的特定修饰,包括 8-氧鸟嘌呤、胸腺嘧啶二醇、乙撑腺嘌呤和嘧啶二聚体。DNA 修饰对 pAgos 活性的影响强烈依赖于它们相对于切割位点的位置,并且与相应位置的引导-靶不匹配的影响相当或超过。对于所有测试的 pAgos,当 DNA 损伤位于切割位置时,观察到最强的影响。研究结果表明,pAgos 的 DNA 切割受到 DNA 修饰的强烈影响,因此可能将其用作 DNA 损伤的传感器。

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