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RNA 干扰过程中的核糖体清除。

Ribosome clearance during RNA interference.

机构信息

Department of MCD Biology, UC Santa Cruz, Santa Cruz, California 95064, USA.

Departments of Pathology and Genetics, Stanford University School of Medicine, Stanford, California 94305, USA.

出版信息

RNA. 2019 Aug;25(8):963-974. doi: 10.1261/rna.070813.119. Epub 2019 May 20.

Abstract

In the course of identifying and cleaving RNA, the RNAi machinery must encounter and contend with the megadalton-sized ribosomes that carry out translation. We investigated this interface by examining the fate of actively translated mRNAs subjected to RNAi in Quantifying RNA levels (RNA-seq) and ongoing translation (Ribo-seq), we found there is a greater fold repression of ongoing translation than expected from loss of RNA alone, observing stronger translation repression relative to RNA repression for multiple, independent double-stranded RNA triggers, and for multiple genes. In animals that lack the RNA helicase SKI complex and the ribosome rescue factor PELOTA, ribosomes stall on the 3' edges of mRNAs at and upstream of the RNAi trigger. One model to explain these observations is that ribosomes are actively cleared from mRNAs by SKI and PELO during or following mRNA cleavage. Our results expand prior studies that show a role for the SKI RNA helicase complex in removing RNA targets following RNAi in flies and plants, illuminating the widespread role of the nonstop translation surveillance in RNA silencing during RNAi. Our results are also consistent with proposals that RNAi can attack messages during active translation.

摘要

在识别和切割 RNA 的过程中,RNAi 机制必须遇到并应对执行翻译的兆道尔顿大小的核糖体。我们通过检查在 RNAi 过程中受翻译影响的活性翻译 mRNA 的命运来研究这个界面,通过定量 RNA 水平(RNA-seq)和正在进行的翻译(Ribo-seq),我们发现正在进行的翻译的抑制程度比单独失去 RNA 时预计的要大得多,对于多个独立的双链 RNA 触发物和多个基因,观察到相对于 RNA 抑制的更强的翻译抑制。在缺乏 RNA 解旋酶 SKI 复合物和核糖体救援因子 PELOTA 的动物中,核糖体在 RNAi 触发物及其上游的 mRNA 3' 边缘处停滞。一种解释这些观察结果的模型是,SKI 和 PELO 在 mRNA 切割过程中或之后将核糖体从 mRNA 上主动清除。我们的结果扩展了先前的研究,表明 SKI RNA 解旋酶复合物在果蝇和植物中的 RNAi 后清除 RNA 靶标中起作用,阐明了非终止翻译监测在 RNAi 期间 RNA 沉默中的广泛作用。我们的结果也与 RNAi 可以在翻译过程中攻击信息的建议一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22b6/6633202/8d669863259f/963f01.jpg

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