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首页> 外文期刊>FEMS Microbiology Reviews >DNA silencing by prokaryotic Argonaute proteins adds a new layer of defense against invading nucleic acids
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DNA silencing by prokaryotic Argonaute proteins adds a new layer of defense against invading nucleic acids

机译:原核argonaute蛋白的DNA沉默增加了一种针对入侵核酸的新型防御层

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摘要

Argonaute (Ago) proteins are encoded in all three domains of life and are responsible for the regulation of intracellular nucleic acid levels. Whereas some Ago variants are able to cleave target nucleic acids by their endonucleolytic activity, others only bind to their target nucleic acids while target cleavage is mediated by other effector proteins. Although all Ago proteins show a high degree of overall structural homology, the nature of the nucleic acid binding partners differs significantly. Recent structural and functional data have provided intriguing new insights into the mechanisms of archaeal and bacterial Ago variants demonstrating the mechanistic diversity within the prokaryotic Ago family with astonishing differences in nucleic acid selection and nuclease specificity. In this review, we provide an overview of the structural organisation of archaeal Ago variants and discuss the current understanding of their biological functions that differ significantly from their eukaryotic counterparts.
机译:Argonaute(前)蛋白质在所有三个域域编码,并负责调节细胞内核酸水平。然而,在某些过程中,变体能够通过它们的内核酸溶解活性切割靶核酸,而其他仅与其靶核酸结合,同时靶切割由其他效应蛋白介导。虽然蛋白质蛋白质显示出高度的整体结构同源性,但核酸结合伴侣的性质显着不同。最近的结构和功能数据已经为挑战和细菌前的机制提供了兴趣的新见解,展示了核酸选择和核酸特异性令人惊讶的差异的核酸中的机制多样性。在本次审查中,我们提供了古老的结构组织的概述了变体,并讨论了目前对他们的真核生物对应物显着不同的理解。

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