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首页> 外文期刊>Biochemistry and Cell Biology >Mistranslating tRNA identifies a deleterious S213P mutation in the Saccharomyces cerevisiae eco1-1 allele
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Mistranslating tRNA identifies a deleterious S213P mutation in the Saccharomyces cerevisiae eco1-1 allele

机译:isranslating trna识别酿酒酵母菌酿酒酵母ECO1-1等位基因中有害的S213P突变

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Mistranslation occurs when an amino acid not specified by the standard genetic code is incorporated during translation. Since the ribosome does not read the amino acid, tRNA variants aminoacylated with a non-cognate amino acid or containing a non-cognate anticodon dramatically increase the frequency of mistranslation. In a systematic genetic analysis, we identified a suppression interaction between tRNA(UGG, G26A)(Ser), which mistranslates proline codons by inserting serine, and eco1-1, a temperature sensitive allele of the gene encoding an acetyltransferase required for sister chromatid cohesion. The suppression was partial, with a tRNA that inserts alanine at proline codons and not apparent for a tRNA that inserts serine at arginine codons. Sequencing of the eco1-1 allele revealed a mutation that would convert the highly conserved serine 213 within beta 7 of the GCN5-related N-acetyltransferase core to proline. Mutation of P213 in eco1-1 back to the wild-type serine restored the function of the enzyme at elevated temperatures. Our results indicate the utility of mistranslating tRNA variants to identify functionally relevant mutations and identify eco1 as a reporter for mistranslation. We propose that mistranslation could be used as a tool to treat genetic disease.
机译:当标准遗传密码未指定的氨基酸在翻译期间结合时发生误导。由于核糖体未读取氨基酸,因此用非同源氨基酸或含有非同源抗oryon的TRNA变体氨酰基化,从而显着增加了误差的频率。在系统的遗传分析中,我们鉴定了TRNA(UGG,G26A)(SER)之间的抑制相互作用,其通过插入丝氨酸和ECO1-1,编码乙酰转移酶的基因的温度敏感等位基因来递送脯氨酸密码子,所述致乙酰转移酶需要筛选的染色体凝聚力。抑制是部分的部分,其在脯氨酸密码子上插入丙氨酸的三纳,并且对于在精氨酸密码子中插入丝氨酸的三个TRNA不明显。 ECO1-1的序列揭示了一种突变,其将高度保守的丝氨酸213转化为GCN5相关的N-乙酰转移酶核的β7内的高度保守的丝氨酸213与脯氨酸。 ECO1-1返回野生型丝氨酸P213的突变恢复了酶在升高的温度下的功能。我们的结果表明,递查TRNA变体的效用,以识别功能相关的突变并将ECO1鉴定为报告者进行误解。我们建议误导可以用作治疗遗传疾病的工具。

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