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Mitochondrial Translation: Elongation Factor Tu Is Essential in Fission Yeast and Depends on an Exchange Factor Conserved in Humans but Not in Budding Yeast

机译:线粒体翻译:裂变酵母中的延伸因子Tu是必不可少的,并且取决于人类中保守的交换因子,而不是发芽酵母中的交换因子。

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摘要

The translation elongation factor EF-Tu is a GTPase that delivers amino-acylated tRNAs to the ribosome during the elongation step of translation. EF-Tu/GDP is recycled by the guanine nucleotide exchange factor EF-Ts. Whereas EF-Ts is lacking in S. cerevisiae, both translation factors are found in S. pombe and H. sapiens mitochondria, consistent with the known similarity between fission yeast and human cell mitochondrial physiology. We constructed yeast mutants lacking these elongation factors. We show that mitochondrial translation is vital for S. pombe, as it is for human cells. In a genetic background allowing the loss of mitochondrial functions, a block in mitochondrial translation in S. pombe leads to a major depletion of mtDNA. The relationships between EF-Ts and EF-Tu from both yeasts and humans were investigated through functional complementation and coexpression experiments and by a search for suppressors of the absence of the S. pombe EF-Ts. We find that S. cerevisiae EF-Tu is functionally equivalent to the S. pombe EF-Tu/EF-Ts couple. Point mutations in the S. pombe EF-Tu can render it independent of its exchange factor, thereby mimicking the situation in S. cerevisiae.
机译:翻译延伸因子EF-Tu是一种GTP酶,其在翻译的延伸步骤中将氨基酰化的tRNA递送至核糖体。 EF-Tu / GDP由鸟嘌呤核苷酸交换因子EF-Ts回收。酿酒酵母中缺乏EF-Ts,而在裂殖酵母和智人线粒体中均发现了两种翻译因子,这与裂变酵母和人类细胞线粒体生理学之间的已知相似性相符。我们构建了缺少这些延伸因子的酵母突变体。我们表明线粒体翻译对粟酒裂殖酵母至关重要,对人类细胞也是如此。在允许线粒体功能丧失的遗传背景下,粟酒裂殖酵母线粒体翻译受阻会导致mtDNA大量消耗。通过功能互补和共表达实验,以及寻找不存在粟酒裂殖酵母EF-T的抑制剂,研究了酵母和人的EF-T和EF-Tu之间的关系。我们发现酿酒酵母EF-Tu在功能上等同于粟酒裂殖酵母EF-Tu / EF-Ts夫妇。粟酒裂殖酵母EF-Tu中的点突变可以使其独立于其交换因子,从而模仿酿酒酵母的情况。

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