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体内SmpB对tmRNA的保护作用及溶液中前核糖体的结合构象。

In vivo tmRNA protection by SmpB and pre-ribosome binding conformation in solution.

作者信息

Ranaei-Siadat Ehsan, Mérigoux Cécile, Seijo Bili, Ponchon Luc, Saliou Jean-Michel, Bernauer Julie, Sanglier-Cianférani Sarah, Dardel Fréderic, Vachette Patrice, Nonin-Lecomte Sylvie

机构信息

CNRS-UMR 8015, Laboratoire de Cristallographie et RMN Biologiques, Faculté de Pharmacie, 75270 Paris Cedex 06, France Université Paris Descartes, LCRB, Faculté de Pharmacie, 75270 Paris Cedex 06, France.

Université Paris-Sud, IBBMC, UMR8619, 91405 Orsay, France CNRS, 91405 Orsay, France.

出版信息

RNA. 2014 Oct;20(10):1607-20. doi: 10.1261/rna.045674.114. Epub 2014 Aug 18.

Abstract

TmRNA is an abundant RNA in bacteria with tRNA and mRNA features. It is specialized in trans-translation, a translation rescuing system. We demonstrate that its partner protein SmpB binds the tRNA-like region (TLD) in vivo and chaperones the fold of the TLD-H2 region. We use an original approach combining the observation of tmRNA degradation pathways in a heterologous system, the analysis of the tmRNA digests by MS and NMR, and co-overproduction assays of tmRNA and SmpB. We study the conformation in solution of tmRNA alone or in complex with one SmpB before ribosome binding using SAXS. Our data show that Mg(2+) drives compaction of the RNA structure and that, in the absence of Mg(2+), SmpB has a similar effect albeit to a lesser extent. Our results show that tmRNA is intrinsically structured in solution with identical topology to that observed on complexes on ribosomes which should facilitate its subsequent recruitment by the 70S ribosome, free or preloaded with one SmpB molecule.

摘要

转运信使核糖核酸(TmRNA)是细菌中一种丰富的核糖核酸,兼具转运核糖核酸(tRNA)和信使核糖核酸(mRNA)的特征。它专门参与反式翻译,即一种翻译拯救系统。我们证明其伴侣蛋白SmpB在体内结合类tRNA区域(TLD)并陪伴TLD - H2区域的折叠。我们采用了一种原创方法,结合在异源系统中观察TmRNA降解途径、通过质谱(MS)和核磁共振(NMR)分析TmRNA消化产物以及TmRNA和SmpB的共过量表达实验。我们使用小角X射线散射(SAXS)研究核糖体结合前单独的TmRNA或与一个SmpB形成复合物在溶液中的构象。我们的数据表明镁离子(Mg²⁺)促使RNA结构紧凑,并且在没有Mg²⁺的情况下,SmpB虽作用程度较小但有类似效果。我们的结果表明,TmRNA在溶液中具有内在结构,其拓扑结构与在核糖体复合物上观察到的相同,这应有助于70S核糖体(无论是游离的还是预加载有一个SmpB分子的)随后对其进行招募。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0753/4174442/c0485accd194/1607f01.jpg

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