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延伸因子依赖性tRNA修饰途径在神经退行性疾病和癌症中的作用

Roles of Elongator Dependent tRNA Modification Pathways in Neurodegeneration and Cancer.

作者信息

Hawer Harmen, Hammermeister Alexander, Ravichandran Keerthiraju Ethiraju, Glatt Sebastian, Schaffrath Raffael, Klassen Roland

机构信息

Institut für Biologie, FG Mikrobiologie, Universität Kassel, Heirich-Plett-Str. 40, 34132 Kassel, Germany.

Max Planck Research Group at the Malopolska Centre of Biotechnology, Jagiellonian University, 30-387 Krakow, Poland.

出版信息

Genes (Basel). 2018 Dec 28;10(1):19. doi: 10.3390/genes10010019.

Abstract

Transfer RNA (tRNA) is subject to a multitude of posttranscriptional modifications which can profoundly impact its functionality as the essential adaptor molecule in messenger RNA (mRNA) translation. Therefore, dynamic regulation of tRNA modification in response to environmental changes can tune the efficiency of gene expression in concert with the emerging epitranscriptomic mRNA regulators. Several of the tRNA modifications are required to prevent human diseases and are particularly important for proper development and generation of neurons. In addition to the positive role of different tRNA modifications in prevention of neurodegeneration, certain cancer types upregulate tRNA modification genes to sustain cancer cell gene expression and metastasis. Multiple associations of defects in genes encoding subunits of the tRNA modifier complex Elongator with human disease highlight the importance of proper anticodon wobble uridine modifications (xm⁵U) for health. Elongator functionality requires communication with accessory proteins and dynamic phosphorylation, providing regulatory control of its function. Here, we summarized recent insights into molecular functions of the complex and the role of Elongator dependent tRNA modification in human disease.

摘要

转运RNA(tRNA)会经历多种转录后修饰,这些修饰会深刻影响其作为信使RNA(mRNA)翻译中关键衔接分子的功能。因此,响应环境变化对tRNA修饰进行动态调控,可与新兴的表观转录组mRNA调节剂协同调节基因表达效率。几种tRNA修饰对于预防人类疾病是必需的,对神经元的正常发育和生成尤为重要。除了不同的tRNA修饰在预防神经退行性变中的积极作用外,某些癌症类型会上调tRNA修饰基因以维持癌细胞基因表达和转移。tRNA修饰复合物Elongator亚基编码基因缺陷与人类疾病的多种关联,凸显了正确的反密码子摆动尿苷修饰(xm⁵U)对健康的重要性。Elongator的功能需要与辅助蛋白进行通讯以及动态磷酸化,从而对其功能进行调控。在此,我们总结了对该复合物分子功能以及Elongator依赖性tRNA修饰在人类疾病中的作用的最新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/287f/6356722/b2f21f2a662b/genes-10-00019-g001.jpg

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