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首页> 外文期刊>Current Genetics: Eukaryotes with Emphasis on Yeasts, Fungi, Mitochondria, Plastids >Nonsense codon suppression in fission yeast due to mutations of tRNA(Ser.11) and translation release factor Sup35 (eRF3)
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Nonsense codon suppression in fission yeast due to mutations of tRNA(Ser.11) and translation release factor Sup35 (eRF3)

机译:tRNA(Ser.11)和翻译释放因子Sup35(eRF3)突变导致裂变酵母中的无意义密码子抑制

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In the fission yeast Schizosaccharomyces pombe, sup9 mutations can suppress the termination of translation at nonsense (stop) codons. We localized sup9 physically to the spctrnaser.11 locus and confirmed that one allele (sup9-UGA) alters the anticodon of a serine tRNA. We also found that another purported allele is not allelic. Instead, strains with that suppressor (renamed sup35-F592S) have a single base pair substitution (T1775C) that introduces an amino acid substitution in the Sup35 protein (Sup35-F592S). Reduced functionality of Sup35 (eRF3), the ubiquitous guanine nucleotide-responsive translation release factor of eukaryotes, increases read-through of stop codons. Tetrad dissection revealed that suppression is tightly linked to (inseparable from) the sup35-F592S mutation and that there are no additional extragenic modifiers. The Mendelian inheritance indicates that the Sup35-F592S protein does not adopt an infectious amyloid state ([PSI (+)] prion) to affect suppression, consistent with recent evidence that fission yeast Sup35 does not form prions. We also report that sup9-UGA and sup35-F592S exhibit different strengths of suppression for opal stop codons of ade6-M26 and ade6-M375. We discuss possible mechanisms for the variation in suppressibility exhibited by the two alleles.
机译:在裂殖酵母裂殖酵母中,sup9突变可以抑制无义(终止)密码子的翻译终止。我们将sup9物理定位到spctrnaser.11基因座,并确认一个等位基因(sup9-UGA)改变了丝氨酸tRNA的反密码子。我们还发现另一个声称的等位基因不是等位基因。取而代之的是,带有该抑制剂的菌株(重命名为sup35-F592S)具有单个碱基对取代(T1775C),该碱基对在Sup35蛋白(Sup35-F592S)中引入了氨基酸取代。 Sup35(eRF3)的功能降低,真核生物无处不在的鸟嘌呤核苷酸响应翻译释放因子,增加了终止密码子的通读率。 Tetrad解剖显示抑制作用与sup35-F592S突变紧密相关(不可分),并且没有其他外源修饰因子。孟德尔遗传表明,Sup35-F592S蛋白没有采用传染性淀粉样蛋白状态([PSI(+)] pr病毒)来实现抑制作用,这与裂变酵母Sup35不会形成病毒的最新证据一致。我们还报告了sup9-UGA和sup35-F592S对ade6-M26和ade6-M375的蛋白石终止密码子表现出不同的抑制强度。我们讨论了由两个等位基因表现出的抑制性变异的可能机制。

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