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在mRNA解码过程中核糖体蛋白S12与延伸因子EF-Tu之间的信号传递。

A signal relay between ribosomal protein S12 and elongation factor EF-Tu during decoding of mRNA.

作者信息

Gregory Steven T, Carr Jennifer F, Dahlberg Albert E

机构信息

Department of Molecular Biology, Cell Biology and Biochemistry, Brown University, Providence, Rhode Island 02912, USA.

出版信息

RNA. 2009 Feb;15(2):208-14. doi: 10.1261/rna.1355709. Epub 2008 Dec 17.

Abstract

Codon recognition by aminoacyl-tRNA on the ribosome triggers a process leading to GTP hydrolysis by elongation factor Tu (EF-Tu) and release of aminoacyl-tRNA into the A site of the ribosome. The nature of this signal is largely unknown. Here, we present genetic evidence that a specific set of direct interactions between ribosomal protein S12 and aminoacyl-tRNA, together with contacts between S12 and 16S rRNA, provide a pathway for the signaling of codon recognition to EF-Tu. Three novel amino acid substitutions, H76R, R37C, and K53E in Thermus thermophilus ribosomal protein S12, confer resistance to streptomycin. The streptomycin-resistance phenotypes of H76R, R37C, and K53E are all abolished by the mutation A375T in EF-Tu. A375T confers resistance to kirromycin, an antibiotic freezing EF-Tu in a GTPase activated state. H76 contacts aminoacyl-tRNA in ternary complex with EF-Tu and GTP, while R37 and K53 are involved in the conformational transition of the 30S subunit occurring upon codon recognition. We propose that codon recognition and domain closure of the 30S subunit are signaled through aminoacyl-tRNA to EF-Tu via these S12 residues.

摘要

核糖体上氨酰 - tRNA对密码子的识别引发了一个导致延伸因子Tu(EF - Tu)水解GTP并将氨酰 - tRNA释放到核糖体A位点的过程。这种信号的本质在很大程度上尚不清楚。在这里,我们提供了遗传学证据,表明核糖体蛋白S12与氨酰 - tRNA之间的一组特定直接相互作用,以及S12与16S rRNA之间的接触,为向EF - Tu传递密码子识别信号提供了一条途径。嗜热栖热菌核糖体蛋白S12中的三个新氨基酸取代H76R、R37C和K53E赋予了对链霉素的抗性。EF - Tu中的突变A375T消除了H76R、R37C和K53E的链霉素抗性表型。A375T赋予了对奇霉素的抗性,奇霉素是一种将EF - Tu冻结在GTP酶激活状态的抗生素。H76在与EF - Tu和GTP形成的三元复合物中与氨酰 - tRNA接触,而R37和K53参与密码子识别时发生的30S亚基构象转变。我们提出,密码子识别和30S亚基的结构域闭合是通过这些S12残基经由氨酰 - tRNA向EF - Tu发出信号的。

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