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核糖体蛋白uS4和uS5界面处进化保守的磷酸丝氨酸-精氨酸盐桥调节酿酒酵母的翻译准确性。

An evolutionarily conserved phosphoserine-arginine salt bridge in the interface between ribosomal proteins uS4 and uS5 regulates translational accuracy in Saccharomyces cerevisiae.

作者信息

Joshi Kartikeya, Luisi Brooke, Wunderlin Grant, Saleh Sima, Lilly Anna, Okusolubo Temiloluwa, Farabaugh Philip J

机构信息

Department of Biological Sciences, University of Maryland Baltimore County, 1000 Hilltop Circle, Baltimore 21250, USA.

出版信息

Nucleic Acids Res. 2024 Apr 24;52(7):3989-4001. doi: 10.1093/nar/gkae053.

Abstract

Protein-protein and protein-rRNA interactions at the interface between ribosomal proteins uS4 and uS5 are thought to maintain the accuracy of protein synthesis by increasing selection of cognate aminoacyl-tRNAs. Selection involves a major conformational change-domain closure-that stabilizes aminoacyl-tRNA in the ribosomal acceptor (A) site. This has been thought a constitutive function of the ribosome ensuring consistent accuracy. Recently, the Saccharomyces cerevisiae Ctk1 cyclin-dependent kinase was demonstrated to ensure translational accuracy and Ser238 of uS5 proposed as its target. Surprisingly, Ser238 is outside the uS4-uS5 interface and no obvious mechanism has been proposed to explain its role. We show that the true target of Ctk1 regulation is another uS5 residue, Ser176, which lies in the interface opposite to Arg57 of uS4. Based on site specific mutagenesis, we propose that phospho-Ser176 forms a salt bridge with Arg57, which should increase selectivity by strengthening the interface. Genetic data show that Ctk1 regulates accuracy indirectly; the data suggest that the kinase Ypk2 directly phosphorylates Ser176. A second kinase pathway involving TORC1 and Pkc1 can inhibit this effect. The level of accuracy appears to depend on competitive action of these two pathways to regulate the level of Ser176 phosphorylation.

摘要

核糖体蛋白uS4和uS5之间界面处的蛋白质-蛋白质和蛋白质-rRNA相互作用,被认为通过增加对同源氨酰-tRNA的选择来维持蛋白质合成的准确性。这种选择涉及一种主要的构象变化——结构域闭合,它能稳定核糖体A位点上的氨酰-tRNA。这一直被认为是核糖体的一种组成功能,可确保一致的准确性。最近,酿酒酵母Ctk1细胞周期蛋白依赖性激酶被证明可确保翻译准确性,并且有人提出uS5的Ser238是其作用靶点。令人惊讶的是,Ser238位于uS4-uS5界面之外,且尚未提出明显的机制来解释其作用。我们发现Ctk1调控的真正靶点是uS5的另一个残基Ser176,它位于与uS4的Arg57相对的界面中。基于位点特异性诱变,我们提出磷酸化的Ser176与Arg57形成盐桥,这应该会通过加强界面来提高选择性。遗传数据表明Ctk1间接调控准确性;数据表明激酶Ypk2直接磷酸化Ser176。涉及TORC1和Pkc1的第二条激酶途径可抑制这种作用。准确性水平似乎取决于这两条途径调节Ser176磷酸化水平的竞争作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8609/11040005/0ecaa2233367/gkae053figgra1.jpg

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