首页> 外文期刊>Nucleic Acids Research >Programmable DNA cleavage by Ago nucleases from mesophilic bacteria Clostridium butyricum and Limnothrix rosea
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Programmable DNA cleavage by Ago nucleases from mesophilic bacteria Clostridium butyricum and Limnothrix rosea

机译:以前可编程DNA裂解来自嗜培素细菌牛肝菌和Limnothrix Rosea的核酸酶

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摘要

Argonaute (Ago) proteins are key players in RNA interference in eukaryotes, where they function as RNA-guided RNA endonucleases. Prokaryotic Argonautes (pAgos) are much more diverse than their eukaryotic counterparts but their cellular functions and mechanisms of action remain largely unknown. Some pAgos were shown to use small DNA guides for endonucleolytic cleavage of complementary DNA in vitro. However, previously studied pAgos from thermophilic prokaryotes function at elevated temperatures, which limits their potential use as a tool in genomic applications. Here, we describe two pAgos from mesophilic bacteria, Clostridium butyricum (CbAgo) and Limnothrix rosea (LrAgo), that act as DNA-guided DNA nucleases at physiological temperatures. In comparison with previously studied pAgos, CbAgo and LrAgo do not show strong preferences for the 5'-nucleotide in guide DNA and can use not only 5'-phosphorylated but also 5'-hydroxyl DNA guides. Both CbAgo and LrAgo can tolerate guide/target mismatches in the seed region, but are sensitive to mismatches in the 3'-guide region. Both pAgos can perform programmable endonucleolytic cleavage of double-stranded DNA substrates, showing enhanced activity at AT-rich regions and at elevated temperatures. The biochemical characterization of mesophilic pAgo proteins paves the way for their use for DNA manipulations both in vitro and in vivo.
机译:Argonaute(前)蛋白质是真核生物中RNA干扰的关键球员,其中它们用作RNA引导的RNA内切核酸酶。原核argonaute(Pagos)比其真核同行更多样化,但它们的蜂窝功能和行动机制仍然很大程度上未知。显示一些PAGOS用于在体外使用小型DNA指导用于互补DNA的内啡酰基裂解。然而,先前研究过的嗜热原核生物在升高的温度下函数,这限制了它们作为基因组应用中的工具的潜在用途。在这里,我们描述了来自嗜培素的细菌,丁蒂氏菌(CBAGO)和Limnothrix Rosea(LRAGO)的两只疾病,其在生理温度下充当DNA引导的DNA核酸酶。与先前研究的Pagos相比,CBAGO和LRAGO对导液中的5'-核苷酸没有表现出强烈的偏好,并且不仅可以使用5'-磷酸化而且使用5'-羟基DNA引导件。 CBAGO和LRAGO都可以耐受种子区域中的指南/目标不匹配,但对3'-导向区域的不匹配是敏感的。所有PAGOS都可以对双链DNA底物进行可编程内核溶解裂解,显示在富含物质的区域和升高的温度下的增强活性。嗜培素的Pago蛋白的生化表征为其用于体外和体内的DNA操纵铺设了途径。

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