Department of Molecular Physiology, Faculty of Life Sciences, Kumamoto University, Japan.
FEBS J. 2021 Dec;288(24):7096-7122. doi: 10.1111/febs.15736. Epub 2021 Feb 16.
tRNA molecules are post-transcriptionally modified by tRNA modification enzymes. Although composed of different chemistries, more than 40 types of human tRNA modifications play pivotal roles in protein synthesis by regulating tRNA structure and stability as well as decoding genetic information on mRNA. Many tRNA modifications are conserved among all three kingdoms of life, and aberrations in various human tRNA modification enzymes cause life-threatening diseases. Here, we describe the class of diseases and disorders caused by aberrations in tRNA modifications as 'tRNA modopathies'. Aberrations in over 50 tRNA modification enzymes are associated with tRNA modopathies, which most frequently manifest as dysfunctions of the brain and/or kidney, mitochondrial diseases, and cancer. However, the molecular mechanisms that link aberrant tRNA modifications to human diseases are largely unknown. In this review, we provide a comprehensive compilation of human tRNA modification functions, tRNA modification enzyme genes, and tRNA modopathies, and we summarize the elucidated pathogenic mechanisms underlying several tRNA modopathies. We will also discuss important questions that need to be addressed in order to understand the molecular pathogenesis of tRNA modopathies.
tRNA 分子通过 tRNA 修饰酶进行转录后修饰。尽管组成不同,但超过 40 种类型的人类 tRNA 修饰在蛋白质合成中起着关键作用,通过调节 tRNA 结构和稳定性以及解码 mRNA 上的遗传信息。许多 tRNA 修饰在所有三个生命领域中都是保守的,各种人类 tRNA 修饰酶的异常会导致危及生命的疾病。在这里,我们将由 tRNA 修饰异常引起的疾病类别描述为“tRNA 修饰病”。超过 50 种 tRNA 修饰酶的异常与 tRNA 修饰病有关,这些疾病最常表现为大脑和/或肾脏、线粒体疾病和癌症的功能障碍。然而,导致人类疾病的异常 tRNA 修饰与分子机制在很大程度上尚不清楚。在这篇综述中,我们全面汇编了人类 tRNA 修饰功能、tRNA 修饰酶基因和 tRNA 修饰病,并总结了几种 tRNA 修饰病的已阐明的发病机制。我们还将讨论为了理解 tRNA 修饰病的分子发病机制需要解决的重要问题。