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首页> 外文期刊>Nucleic Acids Research >A deafness-associated tRNA(Asp) mutation alters the m(1)G37 modification, aminoacylation and stability of tRNA(Asp) and mitochondrial function
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A deafness-associated tRNA(Asp) mutation alters the m(1)G37 modification, aminoacylation and stability of tRNA(Asp) and mitochondrial function

机译:耳聋相关的tRNA(Asp)突变改变了tRNA(Asp)的m(1)G37修饰,氨基酰化和稳定性以及线粒体功能

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摘要

In this report, we investigated the pathogenic mechanism underlying the deafness-associated mitochondrial(mt) tRNA(Asp) 7551A > G mutation. The m.7551A > G mutation is localized at a highly conserved nucleotide(A37), adjacent (3') to the anticodon, which is important for the fidelity of codon recognition and stabilization in functional tRNAs. It was anticipated that the m.7551A > G mutation altered the structure and function of mt-tRNA(Asp). The primer extension assay demonstrated that the m.7551A > G mutation created the m(1)G37 modification of mt-tRNA(Asp). Using cybrid cell lines generated by transferring mitochondria from lymphoblastoid cell lines derived from a Chinese family into mitochondrial DNA(mtDNA)-less (rho(o)) cells, we demonstrated the significant decreases in the efficiency of aminoacylation and steady-state level of mt-tRNA(Asp) in mutant cybrids, compared with control cybrids. A failure in metabolism of mt-tRNA(Asp) caused the variable reductions in mtDNA-encoded polypeptides in mutant cybrids. Impaired mitochondrial translation led to the respiratory phenotype in mutant cybrids. The respiratory deficiency lowed mitochondrial adenosine triphosphate production and increased the production of oxidative reactive species in mutant cybrids. Our data demonstrated that mitochondrial dysfunctions caused by the m.7551A > G mutation are associated with deafness. Our findings may provide new insights into the pathophysiology of maternally transmitted deafness that was manifested by altered nucleotide modification of mitochondrial tRNA.
机译:在本报告中,我们调查了与耳聋相关的线粒体(mt)tRNA(Asp)7551A> G突变的致病机制。 m.7551A> G突变位于一个高度保守的核苷酸(A37),与反密码子相邻(3'),这对于功能性tRNA中的密码子识别保真度和稳定性很重要。预期m.7551A> G突变会改变mt-tRNA(Asp)的结构和功能。引物延伸分析表明,m.7551A> G突变产生了mt-tRNA(Asp)的m(1)G37修饰。使用通过将线粒体从中国家族的淋巴母细胞系转移到线粒体少DNA(rho(o))细胞中而产生的混合细胞系,我们证明了氨酰化效率和mt稳态水平的显着降低-tRNA(Asp)在突变的杂种,与对照杂种相比。 mt-tRNA(Asp)的代谢失败导致突变型杂种中mtDNA编码多肽的可变减少。线粒体翻译的受损导致突变型细胞中的呼吸表型。呼吸不足会降低线粒体三磷酸腺苷的产生,并增加突变型杂种中氧化反应物种的产生。我们的数据表明,由m.7551A> G突变引起的线粒体功能障碍与耳聋有关。我们的发现可能为母体传播性耳聋的病理生理学提供新的见解,其表现为线粒体tRNA核苷酸修饰的改变。

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    《Nucleic Acids Research》 |2016年第22期|共12页
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