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Misreading of termination codons in eukaryotes by natural nonsense suppressor tRNAs

机译:天然无义抑制物tRNA对真核生物终止密码子的误读

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摘要

Translational stop codon readthrough provides a regulatory mechanism of gene expression that is extensively utilised by positive-sense ssRNA viruses. The misreading of termination codons is achieved by a variety of naturally occurring suppressor tRNAs whose structure and function is the subject of this survey. All of the nonsense suppressors characterised to date (with the exception of selenocysteine tRNA) are normal cellular tRNAs that are primarily needed for reading their cognate sense codons. As a consequence, recognition of stop codons by natural suppressor tRNAs necessitates unconventional base pairings in anticodon-codon interactions. A number of intrinsic features of the suppressor tRNA contributes to the ability to read non-cognate codons. Apart from anticodon-codon affinity, the extent of base modifications within or 3' of the anticodon may up- or down-regulate the efficiency of suppression. In order to out-compete the polypeptide chain release factor an absolute prerequisite for the action of natural suppressor tRNAs is a suitable nucleotide context, preferentially at the 3' side of the suppressed stop codon. Three major types of viral readthrough sites, based on similar sequences neighbouring the leaky stop codon, can be defined. It is discussed that not only RNA viruses, but also the eukaryotic host organism might gain some profit from cellular suppressor tRNAs.
机译:翻译终止密码子通读提供了正向ssRNA病毒广泛利用的基因表达调控机制。终止密码子的误读是通过各种天然存在的抑制性tRNA实现的,其结构和功能是本次调查的主题。迄今为止,所有特征化的废话抑制子(硒代半胱氨酸tRNA除外)都是正常的细胞tRNA,主要是读取其同源有义密码子所需要的。结果,天然抑制性tRNA识别终止密码子需要在反密码子-密码子相互作用中进行非常规碱基配对。抑制性tRNA的许多固有特征有助于读取非同源密码子。除反密码子亲和力外,反密码子内或反密码子3'内的碱基修饰程度可能会上调或下调抑制效率。为了与多肽链释放因子竞争,天然抑制性tRNA作用的绝对前提是合适的核苷酸背景,优选在抑制的终止密码子的3'侧。可以基于与泄漏终止密码子相邻的相似序列定义三种主要类型的病毒通读位点。讨论了不仅RNA病毒,而且真核宿主生物都可以从细胞抑制性tRNA中获得一些收益。

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