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A deafness-associated tRNAHis mutation alters the mitochondrial function ROS production and membrane potential

机译:耳聋相关的tRNAHis突变会改变线粒体功能ROS产生和膜电位

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摘要

In this report, we investigated the molecular genetic mechanism underlying the deafness-associated mitochondrial tRNAHis 12201T>C mutation. The destabilization of a highly conserved base-pairing (5A-68U) by the m.12201T>C mutation alters structure and function of tRNAHis. Using cybrids constructed by transferring mitochondria from lymphoblastoid cell lines derived from a Chinese family into mtDNA-less (ρo) cells, we showed ∼70% decrease in the steady-state level of tRNAHis in mutant cybrids, compared with control cybrids. The mutation changed the conformation of tRNAHis, as suggested by slower electrophoretic mobility of mutated tRNA with respect to the wild-type molecule. However, ∼60% increase in aminoacylated level of tRNAHis was observed in mutant cells. The failure in tRNAHis metabolism was responsible for the variable reductions in seven mtDNA-encoded polypeptides in mutant cells, ranging from 37 to 81%, with the average of ∼46% reduction, as compared with those of control cells. The impaired mitochondrial translation caused defects in respiratory capacity in mutant cells. Furthermore, marked decreases in the levels of mitochondrial ATP and membrane potential were observed in mutant cells. These mitochondrial dysfunctions caused an increase in the production of reactive oxygen species in the mutant cells. The data provide the evidence for a mitochondrial tRNAHis mutation leading to deafness.
机译:在这篇报告中,我们研究了与耳聋相关的线粒体tRNA His 12201T> C突变的分子遗传机制。 m.12201T> C突变导致高度保守的碱基配对(5A-68U)不稳定,从而改变了tRNA His 的结构和功能。使用通过将线粒体从中国家庭的淋巴母细胞系转移到无mtDNA(ρ o )细胞中而构建的混合体,我们发现tRNA His的稳态水平降低了约70% 在突变体杂种中,与对照杂种相比。突变改变了tRNA His 的构象,这是由于突变的tRNA相对于野生型分子较慢的电泳迁移率所暗示的。然而,在突变细胞中观察到tRNA His 的氨基酰化水平增加了约60%。 tRNA His 代谢的失败是导致突变细胞中7种mtDNA编码多肽减少的原因,其降低幅度为37%至81%,平均降低了约46%。控制细胞。线粒体翻译的受损导致突变细胞呼吸能力的缺陷。此外,在突变细胞中观察到线粒体ATP水平和膜电位的显着降低。这些线粒体功能障碍导致突变细胞中活性氧的产生增加。数据为线粒体tRNA His 突变导致失聪提供了证据。

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