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In plants decapping prevents RDR6-dependent production of small interfering RNAs from endogenous mRNAs

机译:在植物中脱盖可防止内源性mRNA产生RDR6依赖性的小干扰RNA

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摘要

Cytoplasmic degradation of endogenous RNAs is an integral part of RNA quality control (RQC) and often relies on the removal of the 5′ cap structure and their subsequent 5′ to 3′ degradation in cytoplasmic processing (P-)bodies. In parallel, many eukaryotes degrade exogenous and selected endogenous RNAs through post-transcriptional gene silencing (PTGS). In plants, PTGS depends on small interfering (si)RNAs produced after the conversion of single-stranded RNAs to double-stranded RNAs by the cellular RNA-dependent RNA polymerase 6 (RDR6) in cytoplasmic siRNA-bodies. PTGS and RQC compete for transgene-derived RNAs, but it is unknown whether this competition also occurs for endogenous transcripts. We show that the lethality of decapping mutants is suppressed by impairing RDR6 activity. We establish that upon decapping impairment hundreds of endogenous mRNAs give rise to a new class of rqc-siRNAs, that over-accumulate when RQC processes are impaired, a subset of which depending on RDR6 for their production. We observe that P- and siRNA-bodies often are dynamically juxtaposed, potentially allowing for cross-talk of the two machineries. Our results suggest that the decapping of endogenous RNA limits their entry into the PTGS pathway. We anticipate that the rqc-siRNAs identified in decapping mutants represent a subset of a larger ensemble of endogenous siRNAs.
机译:内源性RNA的细胞质降解是RNA质量控制(RQC)不可或缺的一部分,通常依赖于5'帽结构的去除以及它们随后在细胞质加工(P-)体内的5'至3'降解。同时,许多真核生物通过转录后基因沉默(PTGS)降解外源和选定的内源RNA。在植物中,PTGS依赖于细胞质siRNA抗体中依赖于细胞的RNA依赖性RNA聚合酶6(RDR6)将单链RNA转化为双链RNA后产生的小干扰(si)RNA。 PTGS和RQC竞争转基因衍生的RNA,但尚不清楚内源转录本是否也发生这种竞争。我们表明,通过削弱RDR6活性抑制了脱盖突变体的致死性。我们确定,在消除损伤后,数百种内源性mRNA会产生一类新的rqc-siRNA,当RQC进程受到损害时,它们会过度积累,其中一部分依赖于RDR6的生产。我们观察到P和siRNA抗体经常动态并置,可能允许两个机器的串扰。我们的结果表明内源性RNA的去盖化限制了它们进入PTGS途径。我们预期在脱盖突变体中鉴定出的rqc-siRNA代表内源siRNA较大集合的子集。

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