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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Handling mammalian mitochondrial tRNAs and aminoacyl-tRNA synthetases for functional and structural characterization.
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Handling mammalian mitochondrial tRNAs and aminoacyl-tRNA synthetases for functional and structural characterization.

机译:处理哺乳动物的线粒体tRNA和氨酰基tRNA合成酶,以进行功能和结构表征。

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摘要

The mammalian mitochondrial (mt) genome codes for only 13 proteins, which are essential components in the process of oxidative phosphorylation of ADP into ATP. Synthesis of these proteins relies on a proper mt translation machinery. While 22 tRNAs and 2 rRNAs are also coded by the mt genome, all other factors including the set of aminoacyl-tRNA synthetases (aaRSs) are encoded in the nucleus and imported. Investigation of mammalian mt aminoacylation systems (and mt translation in general) gains more and more interest not only in regard of evolutionary considerations but also with respect to the growing number of diseases linked to mutations in the genes of either mt-tRNAs, synthetases or other factors. Here we report on methodological approaches for biochemical, functional, and structural characterization of human/mammalian mt-tRNAs and aaRSs. Procedures for preparation of native and in vitro transcribed tRNAs are accompanied by recommendations for specific handling of tRNAs incline to structural instability and chemical fragility. Large-scale preparation of mg amounts of highly soluble recombinant synthetases is a prerequisite for structural investigations that requires particular optimizations. Successful examples leading to crystallization of four mt-aaRSs and high-resolution structures are recalled and limitations discussed. Finally, the need for and the state-of-the-art in setting up an in vitro mt translation system are emphasized. Biochemical characterization of a subset of mammalian aminoacylation systems has already revealed a number of unprecedented peculiarities of interest for the study of evolution and forensic research. Further efforts in this field will certainly be rewarded by many exciting discoveries.
机译:哺乳动物的线粒体(mt)基因组仅编码13种蛋白质,这是ADP氧化磷酸化为ATP的过程中必不可少的组成部分。这些蛋白质的合成依赖于适当的mt翻译机制。 mt基因组还编码了22个tRNA和2个rRNA,而其他所有因素,包括氨酰基tRNA合成酶(aaRS)的集合,都在细胞核中编码并输入。哺乳动物mt氨酰化系统的研究(以及一般而言的mt翻译)不仅在进化方面,而且在与mt-tRNA,合成酶或其他基因突变相关的疾病数量日益增加方面都越来越受到关注因素。在这里,我们报告人类/哺乳动物的mt-tRNA和aaRSs的生化,功能和结构表征的方法学方法。制备天然和体外转录的tRNA的过程中,伴随着针对tRNA的特殊处理的建议,这些结构倾向于结构不稳定和化学脆弱性。大规模制备毫克量的高可溶性重组合成酶是进行结构研究的先决条件,需要进行特殊的优化。回顾了导致四个mt-aaRS结晶和高分辨率结构的成功实例,并讨论了局限性。最后,强调了建立体外mt翻译系统的需求和最新技术。哺乳动物氨基酰化系统的一个子集的生化特性已经揭示了许多有关进化研究和法医学研究的兴趣。在这一领域的进一步努力肯定会因许多令人兴奋的发现而获得回报。

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