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Right- and left-loop short shRNAs have distinct and unusual mechanisms of gene silencing

机译:右环和左环短shRNA具有独特的基因沉默机制

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摘要

Small hairpin RNAs (shRNAs) having duplex lengths of 25–29 bp are normally processed by Dicer into short interfering RNAs (siRNAs) before incorporation into the RNA-induced silencing complex (RISC). However, shRNAs of ≤19 bp [short shRNAs (sshRNAs)] are too short for Dicer to excise their loops, raising questions about their mechanism of action. sshRNAs are designated as L-type or R-type according to whether the loop is positioned 3′ or 5′ to the guide sequence, respectively. Using nucleotide modifications that inhibit RNA cleavage, we show that R- but not L-sshRNAs require loop cleavage for optimum activity. Passenger-arm slicing was found to be important for optimal functioning of L-sshRNAs but much less important for R-sshRNAs that have a cleavable loop. R-sshRNAs could be immunoprecipitated by antibodies to Argonaute-1 (Ago1); complexes with Ago1 contained both intact and loop-cleaved sshRNAs. In contrast, L-sshRNAs were immunoprecipitated with either Ago1 or Ago2 and were predominantly sliced in the passenger arm of the hairpin. However, ‘pre-sliced’ L-sshRNAs were inactive. We conclude that active L-sshRNAs depend on slicing of the passenger arm to facilitate opening of the duplex, whereas R-sshRNAs primarily act via loop cleavage to generate a 5′-phosphate at the 5′-end of the guide strand.
机译:Dicer通常将双链体长度为25-29 bp的小发夹RNA(shRNA)掺入RNA诱导的沉默复合物(RISC)中,然后加工成短干扰RNA(siRNA)。但是,≤19bp的shRNA [短shRNA(sshRNA)]太短,Dicer无法切除其环,从而引发了有关其作用机理的疑问。根据环是分别位于引导序列的3'还是5',将sshRNA指定为L型或R型。使用抑制RNA切割的核苷酸修饰,我们显示R-而不是L-sshRNAs需要环切割才能获得最佳活性。发现乘客手臂切片对于L-sshRNA的最佳功能很重要,但对具有可裂解环的R-sshRNA则不那么重要。 R-sshRNAs可以被Argonaute-1(Ago1)抗体免疫沉淀。与Ago1的复合体包含完整和环切割的sshRNA。相反,L-sshRNA用Ago1或Ago2进行免疫沉淀,并主要在发夹的乘客臂上切片。但是,“预先切片”的L-sshRNA不活跃。我们得出结论,活性L-sshRNAs依赖于乘客臂的切分以促进双链体的打开,而R-sshRNAs主要通过环切割作用在引导链的5'-末端产生5'-磷酸。

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