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Editing activity for eliminating mischarged tRNAs is essential in mammalian mitochondria

机译:在哺乳动物线粒体中,消除带错tRNA的编辑活性至关重要

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摘要

Accuracy of protein synthesis is enabled by the selection of amino acids for tRNA charging by aminoacyl-tRNA synthetases (ARSs), and further enhanced by the proofreading functions of some of these enzymes for eliminating tRNAs mischarged with noncognate amino acids. Mouse models of editing-defective cytoplasmic alanyl-tRNA synthetase (AlaRS) have previously demonstrated the importance of proofreading for cytoplasmic protein synthesis, with embryonic lethal and progressive neurodegeneration phenotypes. Mammalian mitochondria import their own set of nuclear-encoded ARSs for translating critical polypeptides of the oxidative phosphorylation system, but the importance of editing by the mitochondrial ARSs for mitochondrial proteostasis has not been known. We demonstrate here that the human mitochondrial AlaRS is capable of editing mischarged tRNAs in vitro, and that loss of the proofreading activity causes embryonic lethality in mice. These results indicate that tRNA proofreading is essential in mammalian mitochondria, and cannot be overcome by other quality control mechanisms.
机译:蛋白质合成的准确性通过选择氨基酸来通过氨酰基-tRNA合成酶(ARS)进行tRNA充电的氨基酸来实现,并且通过其中一些酶的校对功能来消除非同源氨基酸错配的tRNA而进一步提高了蛋白质合成的准确性。编辑缺陷型细胞质丙氨酰-tRNA合成酶(AlaRS)的小鼠模型先前已经证明了校正对细胞质蛋白合成具有胚胎致死和进行性神经变性表型的重要性。哺乳动物的线粒体导入了它们自己的一套核编码的ARS,用于翻译氧化磷酸化系统的关键多肽,但是,线粒体ARSs对线粒体蛋白稳态的编辑的重要性还不清楚。我们在这里证明,人类线粒体AlaRS能够在体外编辑带错电荷的tRNA,并且校对活性的丧失会导致小鼠的胚胎致死率。这些结果表明,tRNA校对在哺乳动物的线粒体中是必不可少的,其他质量控制机制无法克服。

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