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首页> 外文期刊>BMC Molecular Biology >A novel mutant of the Sup35 protein of Saccharomyces cerevisiae defective in translation termination and in GTPase activity still supports cell viability
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A novel mutant of the Sup35 protein of Saccharomyces cerevisiae defective in translation termination and in GTPase activity still supports cell viability

机译:啤酒糖酵母Sup35蛋白的新型突变体在翻译终止和GTPase活性方面存在缺陷,仍支持细胞活力

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Background:When a stop codon is located in the ribosomal A-site,the termination complex promotes release of the polypeptide and dissociation of the 80S ribosome.In eukaryotes two proteins eRF1 and eRF3 play a crucial function in the termination process.The essential GTPase Sup35p,the eRF3 release factor of Saccharomyces cerevisiae is highly conserved.In particular,we observed that all eRF3 homologs share a potential phosphorylation site at threonine 341, suggesting a functional role for this residue.The goal of this study was to determine whether this residue is actually phosphorylated in yeast and if it is involved in the termination activity of the protein. Results:We detected no phosphorylation of the Sup35 protein in vivo.However,we show that it is phosphorylated by the cAMP-dependent protein kinase A on T341 in vitro.T341 was mutated to either alanine or to aspartic acid to assess the role of this residue in the activity of the protein.Both mutant proteins showed a large decrease of GTPase activity and a reduced interaction with eRF1/ Sup45p.This was correlated with an increase of translational readthrough in cells carrying the mutant alleles.We also show that this residue is involved in functional interaction between the N- and C-domains of the protein. Conclusion:Our results point to a new critical residue involved in the translation termination activity of Sup35 and in functional interaction between the N-and C-domains of the protein.They also raise interesting questions about the relation between GTPase activity of Sup35 and its essential function in yeast.
机译:背景:当终止密码子位于核糖体A位点时,终止复合物会促进多肽的释放和80S核糖体的解离。在真核生物中,两种蛋白质eRF1和eRF3在终止过程中起着至关重要的功能。必需的GTPase Sup35p因此,我们观察到所有eRF3同源物在苏氨酸341上都有一个潜在的磷酸化位点,表明该残基具有功能性作用。本研究的目的是确定该残基是否为实际上在酵母中被磷酸化,如果它参与了蛋白质的终止活性。结果:我们在体内未检测到Sup35蛋白的磷酸化,但是我们证明它在体外被TAMP上的cAMP依赖性蛋白激酶A磷酸化.T341被突变为丙氨酸或天冬氨酸以评估其作用这两个突变蛋白都显示GTPase活性大大降低,并且与eRF1 / Sup45p的相互作用降低,这与携带突变等位基因的细胞中的翻译通透性增加有关。参与蛋白质N和C结构域之间的功能相互作用。结论:我们的结果指出了一个新的关键残基,涉及Sup35的翻译终止活性以及该蛋白N和C结构域之间的功能相互作用,也提出了有关Sup35 GTPase活性与其必需成分之间关系的有趣问题。在酵母中起作用。

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