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首页> 外文期刊>Nature Communications >Tailing and degradation of Argonaute-bound small RNAs protect the genome from uncontrolled RNAi
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Tailing and degradation of Argonaute-bound small RNAs protect the genome from uncontrolled RNAi

机译:精氨酸结合的小RNA的尾巴和降解可保护基因组免受不受控制的RNAi

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摘要

RNAi is a conserved mechanism in which small RNAs induce silencing of complementary targets. How Argonaute-bound small RNAs are targeted for degradation is not well understood. We show that the adenyl-transferase Cid14, a member of the TRAMP complex, and the uridyl-transferase Cid16 add non-templated nucleotides to Argonaute-bound small RNAs in fission yeast. The tailing of Argonaute-bound small RNAs recruits the 3′–5′ exonuclease Rrp6 to degrade small RNAs. Failure in degradation of Argonaute-bound small RNAs results in accumulation of ‘noise’ small RNAs on Argonaute and targeting of diverse euchromatic genes by RNAi. To protect themselves from uncontrolled RNAi, cid14Δ cells exploit the RNAi machinery and silence genes essential for RNAi itself, which is required for their viability. Our data indicate that surveillance of Argonaute-bound small RNAs by Cid14/Cid16 and the exosome protects the genome from uncontrolled RNAi and reveal a rapid RNAi-based adaptation to stress conditions.
机译:RNAi是一种保守的机制,其中小RNA诱导互补靶标沉默。 Argonaute绑定的小RNA如何靶向降解尚未得到很好的了解。我们显示,腺苷转移酶Cid14,TRAMP复合体的成员,和尿嘧啶转移酶Cid16将非模板核苷酸添加到裂变酵母中与Argonaute结合的小RNA。 Argonaute结合的小RNA的尾巴募集3'-5'核酸外切酶Rrp6降解小RNA。结合Argonaute的小RNA降解失败会导致“噪音”小RNA在Argonaute上积累,并通过RNAi靶向多种常染色体基因。为了保护自己不受不受控制的RNAi的侵害,cid14Δ细胞利用RNAi的机制并沉默RNAi本身必需的基因,这是其生存能力所必需的。我们的数据表明Cid14 / Cid16和外泌体对与Argonaute结合的小RNA的监视保护了基因组不受不受控制的RNAi的影响,并揭示了基于RNAi的快速适应压力条件的能力。

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