Concerted structural rearrangements enable RNA channeling into the cytoplasmic Ski238-Ski7-exosome assembly.

IF 14.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Molecular Cell Pub Date : 2023-11-16 Epub Date: 2023-10-24 DOI:10.1016/j.molcel.2023.09.037
Achim Keidel, Alexander Kögel, Peter Reichelt, Eva Kowalinski, Ingmar B Schäfer, Elena Conti
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引用次数: 0

Abstract

The Ski2-Ski3-Ski8 (Ski238) helicase complex directs cytoplasmic mRNAs toward the nucleolytic exosome complex for degradation. In yeast, the interaction between Ski238 and exosome requires the adaptor protein Ski7. We determined different cryo-EM structures of the Ski238 complex depicting the transition from a rigid autoinhibited closed conformation to a flexible active open conformation in which the Ski2 helicase module has detached from the rest of Ski238. The open conformation favors the interaction of the Ski3 subunit with exosome-bound Ski7, leading to the recruitment of the exosome. In the Ski238-Ski7-exosome holocomplex, the Ski2 helicase module binds the exosome cap, enabling the RNA to traverse from the helicase through the internal exosome channel to the Rrp44 exoribonuclease. Our study pinpoints how conformational changes within the Ski238 complex regulate exosome recruitment for RNA degradation. We also reveal the remarkable conservation of helicase-exosome RNA channeling mechanisms throughout eukaryotic nuclear and cytoplasmic exosome complexes.

协同的结构重排使RNA能够引导进入细胞质Ski238-Ski7-外泌体组装。
Ski2-Ski3-Ski8(Ski238)解旋酶复合物将细胞质mRNAs导向核仁外泌体复合物进行降解。在酵母中,Ski238和外泌体之间的相互作用需要衔接蛋白Ski7。我们确定了Ski238复合物的不同冷冻EM结构,描述了从刚性的自动抑制闭合构象到柔性的活性开放构象的转变,其中Ski2解旋酶模块已从Ski238的其余部分分离。开放构象有利于Ski3亚基与外泌体结合的Ski7的相互作用,导致外泌体的募集。在Ski238-Ski7-外泌体全复合物中,Ski2解旋酶模块结合外泌体帽,使RNA能够从解旋酶穿过内部外泌体通道到达Rrp44外核糖核酸酶。我们的研究精确定位了Ski238复合物内的构象变化如何调节外泌体募集以进行RNA降解。我们还揭示了解旋酶外泌体RNA在真核和细胞质外泌体复合物中的通道机制的显著保守性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Cell
Molecular Cell 生物-生化与分子生物学
CiteScore
26.00
自引率
3.80%
发文量
389
审稿时长
1 months
期刊介绍: Molecular Cell is a companion to Cell, the leading journal of biology and the highest-impact journal in the world. Launched in December 1997 and published monthly. Molecular Cell is dedicated to publishing cutting-edge research in molecular biology, focusing on fundamental cellular processes. The journal encompasses a wide range of topics, including DNA replication, recombination, and repair; Chromatin biology and genome organization; Transcription; RNA processing and decay; Non-coding RNA function; Translation; Protein folding, modification, and quality control; Signal transduction pathways; Cell cycle and checkpoints; Cell death; Autophagy; Metabolism.
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