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A Synthetic Reporter for Probing Mistranslation in Living Cells

机译:一种用于探测活细胞中误导的合成记者

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Aminoacyl-tRNA synthetases (AARSs) play key roles in maintaining high fidelity of protein synthesis. They charge cognate tRNAs with corresponding amino acids, and hydrolyze mischarged tRNAs by editing mechanisms. Impairment of AARS editing activities can reduce the accuracy of tRNA aminoacylation to produce mischarged tRNAs, which cause mistranslation and cell damages. To evaluate the mistranslation rate of threonine codons in living cells, in this study we designed a quantitative reporter derived from the green fluorescent protein (GFP). The original GFP has multiple threonine codons which could affect the accuracy of measurement, so we generated a GFP variant containing only one threonine residue to specifically quantify mistranslation at the threonine codon. To validate, we applied this single-threonine GFP reporter to evaluate mistranslation at the threonine codon with mutations or modifications of threonine-tRNA synthetase and compared with other methods of mistranslation evaluation, which showed that this reporter is reliable and facile to use.
机译:氨基酰基-TRNA合成酶(AARS)在维持蛋白质合成的高保真方面发挥关键作用。它们用相应的氨基酸电荷对同源TrNA,并通过编辑机制水解减少的TRNA。 AARS编辑活动的损害可以降低TRNA氨基酰化的准确性,从而产生混溶性TRNA,这导致误差和细胞损坏。为了评估生物细胞中苏氨酸密码子的误差率,在这项研究中,我们设计了衍生自绿色荧光蛋白(GFP)的定量报告。原始GFP具有多个苏氨酸密码子,可以影响测量的准确性,因此我们产生仅包含一个苏氨酸残基的GFP变体,以在苏氨酸密码子上特别定量误差。为了验证,我们应用这种单苏氨酸GFP记者,以苏氨酸-TRNA合成酶的突变或修饰评估苏氨酸密码子的误差,并与其他误导评估方法进行比较,这表明本报告称本报告称为可靠且易于使用。

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