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分析大肠杆菌 RNA 降解体中非结构化 RNA/蛋白质识别核心及其与调控 RNA/Hfq 复合物的相互作用。

Analysis of the natively unstructured RNA/protein-recognition core in the Escherichia coli RNA degradosome and its interactions with regulatory RNA/Hfq complexes.

机构信息

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

Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, UK.

出版信息

Nucleic Acids Res. 2018 Jan 9;46(1):387-402. doi: 10.1093/nar/gkx1083.

Abstract

The RNA degradosome is a multi-enzyme assembly that plays a central role in the RNA metabolism of Escherichia coli and numerous other bacterial species including pathogens. At the core of the assembly is the endoribonuclease RNase E, one of the largest E. coli proteins and also one that bears the greatest region predicted to be natively unstructured. This extensive unstructured region, situated in the C-terminal half of RNase E, is punctuated with conserved short linear motifs that recruit partner proteins, direct RNA interactions, and enable association with the cytoplasmic membrane. We have structurally characterized a subassembly of the degradosome-comprising a 248-residue segment of the natively unstructured part of RNase E, the DEAD-box helicase RhlB and the glycolytic enzyme enolase, and provide evidence that it serves as a flexible recognition centre that can co-recruit small regulatory RNA and the RNA chaperone Hfq. Our results support a model in which the degradosome captures substrates and regulatory RNAs through the recognition centre, facilitates pairing to cognate transcripts and presents the target to the ribonuclease active sites of the greater assembly for cooperative degradation or processing.

摘要

RNA 降解体是一种多酶复合物,在大肠杆菌和许多其他细菌物种(包括病原体)的 RNA 代谢中发挥核心作用。该复合物的核心是内切核糖核酸酶 RNase E,它是大肠杆菌最大的蛋白质之一,也是预测具有最大天然无规卷曲区域的蛋白质之一。这个广泛的无规卷曲区域位于 RNase E 的 C 端,其中有保守的短线性基序,这些基序可以招募伴侣蛋白、指导 RNA 相互作用,并与细胞质膜结合。我们已经对降解体的一个亚基进行了结构表征,该亚基包含 RNase E 天然无规卷曲部分的 248 个残基片段、DEAD 盒解旋酶 RhlB 和糖酵解酶烯醇酶,并提供了证据表明它作为一个灵活的识别中心,可以共同招募小的调节 RNA 和 RNA 伴侣蛋白 Hfq。我们的结果支持这样一种模型,即降解体通过识别中心捕获底物和调节 RNA,促进与同源转录物的配对,并将靶标呈现给更大复合物的核糖核酸酶活性位点,以进行协同降解或加工。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b77/5758883/4587226f200f/gkx1083fig1.jpg

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