首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Inhibited cell growth and protein functional changes from an editing-defective tRNA synthetase.
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Inhibited cell growth and protein functional changes from an editing-defective tRNA synthetase.

机译:编辑缺陷的tRNA合成酶抑制细胞生长和蛋白质功能变化。

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摘要

The genetic code is established in aminoacylation reactions catalyzed by aminoacyl-tRNA synthetases. Many aminoacyl-tRNA synthetases require an additional domain for editing, to correct errors made by the catalytic domain. A nonfunctional editing domain results in an ambiguous genetic code, where a single codon is not translated as a specific amino acid but rather as a statistical distribution of amino acids. Here, wide-ranging consequences of genetic code ambiguity in Escherichia coli were investigated with an editing-defective isoleucyl-tRNA synthetase. Ambiguity retarded cell growth at most temperatures in rich and minimal media. These growth rate differences were seen regardless of the carbon source. Inclusion of an amino acid analogue that is misactivated (and not cleared) diminished growth rate by up to 100-fold relative to an isogenic strain with normal editing function. Experiments with target-specific antibiotics for ribosomes, DNA replication, and cell wall biosynthesis, in conjunction with measurements of mutation frequencies, were consistent with global changes in protein function caused by errors of translation and not editing-induced mutational errors. Thus, a single defective editing domain caused translationally generated global effects on protein functions that, in turn, provide powerful selective pressures for maintenance of editing by aminoacyl-tRNA synthetases.
机译:在由氨酰基-tRNA合成酶催化的氨酰化反应中建立遗传密码。许多氨酰基-tRNA合成酶需要一个额外的域进行编辑,以纠正由催化域引起的错误。非功能性编辑域导致不明确的遗传密码,其中单个密码子不翻译为特定氨基酸,而是翻译为氨基酸的统计分布。在这里,用编辑缺陷的异亮氨酰-tRNA合成酶研究了大肠杆菌中遗传密码歧义性的广泛后果。在大多数温度下,歧义会在丰富和最少的培养基中阻碍细胞生长。无论碳源如何,都可以看到这些增长率差异。相对于具有正常编辑功能的同基因菌株,包含被错误激活(未清除)的氨基酸类似物会使生长速率降低多达100倍。使用针对核糖体,DNA复制和细胞壁生物合成的靶标特异性抗生素进行的实验,结合对突变频率的测量,与由翻译错误而不是由编辑引起的突变错误引起的蛋白质功能整体变化相一致。因此,单个有缺陷的编辑结构域对蛋白质功能造成翻译产生的整体影响,进而为维持氨酰基-tRNA合成酶的编辑提供强大的选择压力。

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