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首页> 外文期刊>The biochemical journal >A protein extension to shorten RNA: elongated elongation factor-Tu recognizes the D-arm of T-armless tRNAs in nematode mitochondria
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A protein extension to shorten RNA: elongated elongation factor-Tu recognizes the D-arm of T-armless tRNAs in nematode mitochondria

机译:延长RNA的蛋白质延伸:延长的延伸因子Tu识别线虫线粒体中T臂无tRNA的D臂

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pNematode mitochondria possess extremely truncated tRNAs. Of 22 tRNAs, 20 lack the entire T-arm. The T-arm is necessary for the binding of canonical tRNAs and EF (elongation factor)-Tu (thermo-unstable). The nematode mitochondrial translation system employs two different EF-Tu factors named EF-Tu1 and EF-Tu2. Our previous study showed that nematode iCaenorhabditis elegans/i EF-Tu1 binds specifically to T-armless tRNA. iC. elegans/i EF-Tu1 has a 57-amino acid C-terminal extension that is absent from canonical EF-Tu, and the T-arm-binding residues of canonical EF-Tu are not conserved. In this study, the recognition mechanism of T-armless tRNA by EF-Tu1 was investigated. Both modification interference assays and primer extension analysis of cross-linked ternary complexes revealed that EF-Tu1 interacts not only with the tRNA acceptor stem but also with the D-arm. This is the first example of an EF-Tu recognizing the D-arm of a tRNA. The binding activity of EF-Tu1 was impaired by deletion of only 14 residues from the C-terminus, indicating that the C-terminus of EF-Tu1 is required for its binding to T-armless tRNA. These results suggest that iC. elegans/i EF-Tu1 recognizes the D-arm instead of the T-arm by a mechanism involving its C-terminal region. This study sheds light on the co-evolution of RNA and RNA-binding proteins in nematode mitochondria./p
机译:>线虫线粒体具有截短的tRNA。在22种tRNA中,有20种缺乏整个T臂。 T臂对于规范tRNA和EF(延伸因子)-Tu(热不稳定)的结合是必需的。线虫线粒体翻译系统采用两种不同的EF-Tu因子EF-Tu1和EF-Tu2。我们先前的研究表明,线虫秀丽隐杆线虫EF-Tu1与T型无臂tRNA特异性结合。 C。秀丽线虫EF-Tu1具有57个氨基酸的C-末端延伸,这是标准EF-Tu所没有的,并且经典EF-Tu的T-臂结合残基是不保守的。在这项研究中,研究了EF-Tu1对T型无臂tRNA的识别机制。交联三元复合物的修饰干扰分析和引物延伸分析均表明,EF-Tu1不仅与tRNA受体茎相互作用,而且与D臂相互作用。这是EF-Tu识别tRNA D臂的第一个例子。 EF-Tu1的结合活性因从C末端仅缺失14个残基而受损,这表明EF-Tu1的C末端是其与T型无臂tRNA结合所必需的。这些结果表明 C。秀丽线虫EF-Tu1通过涉及C末端区域的机制识别D臂而不是T臂。这项研究揭示了线虫线粒体中RNA和RNA结合蛋白的共同进化。

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