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在大肠杆菌中,RNA 降解体对 70S 核糖体和多核糖体的识别。

Recognition of the 70S ribosome and polysome by the RNA degradosome in Escherichia coli.

机构信息

Department of Biochemistry, University of Cambridge, Tennis Court Road, Cambridge CB2 1GA, UK.

出版信息

Nucleic Acids Res. 2012 Nov 1;40(20):10417-31. doi: 10.1093/nar/gks739. Epub 2012 Aug 25.

Abstract

The RNA degradosome is a multi-enzyme assembly that contributes to key processes of RNA metabolism, and it engages numerous partners in serving its varied functional roles. Small domains within the assembly recognize collectively a diverse range of macromolecules, including the core protein components, the cytoplasmic lipid membrane, mRNAs, non-coding regulatory RNAs and precursors of structured RNAs. We present evidence that the degradosome can form a stable complex with the 70S ribosome and polysomes, and we demonstrate the proximity in vivo of ribosomal proteins and the scaffold of the degradosome, RNase E. The principal interactions are mapped to two, independent, RNA-binding domains from RNase E. RhlB, the RNA helicase component of the degradosome, also contributes to ribosome binding, and this is favoured through an activating interaction with RNase E. The catalytic activity of RNase E for processing 9S RNA (the ribosomal 5S RNA precursor) is repressed in the presence of the ribosome, whereas there is little affect on the cleavage of single-stranded substrates mediated by non-coding RNA, suggestings that the enzyme retains capacity to cleave unstructured substrates when associated with the ribosome. We propose that polysomes may act as antennae that enhance the rates of capture of the limited number of degradosomes, so that they become recruited to sites of active translation to act on mRNAs as they become exposed or tagged for degradation.

摘要

RNA 降解体是一种多酶复合物,参与 RNA 代谢的关键过程,并与众多伙伴合作发挥其多样化的功能作用。该复合物内的小结构域共同识别包括核心蛋白成分、细胞质脂膜、mRNA、非编码调控 RNA 和结构 RNA 前体在内的各种大分子。我们提供的证据表明,降解体可以与 70S 核糖体和多核糖体形成稳定的复合物,并证明了核糖体蛋白和降解体支架 RNase E 在体内的接近性。主要的相互作用被映射到 RNase E 的两个独立的 RNA 结合结构域。降解体的 RNA 解旋酶成分 RhlB 也有助于与核糖体结合,这通过与 RNase E 的激活相互作用而得到促进。RNase E 对加工 9S RNA(核糖体 5S RNA 前体)的催化活性在核糖体存在时受到抑制,而对由非编码 RNA 介导的单链底物的切割影响很小,这表明当与核糖体结合时,该酶仍然具有切割无结构底物的能力。我们提出,多核糖体可能作为天线,增强有限数量的降解体的捕获速率,从而使其被招募到活跃翻译的部位,以在 mRNA 暴露或标记为降解时对其进行作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7582/3488216/31fd8a278bd4/gks739f1p.jpg

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