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CLP1作为连接tRNA剪接与神经退行性疾病的新角色。

CLP1 as a novel player in linking tRNA splicing to neurodegenerative disorders.

作者信息

Weitzer Stefan, Hanada Toshikatsu, Penninger Josef M, Martinez Javier

机构信息

IMBA, Institute of Molecular Biotechnology of the Academy of Sciences, Vienna, Austria.

出版信息

Wiley Interdiscip Rev RNA. 2015 Jan-Feb;6(1):47-63. doi: 10.1002/wrna.1255. Epub 2014 Aug 20.

Abstract

Defects in RNA metabolic pathways are well-established causes for neurodegenerative disorders. Several mutations in genes involved in pre-messenger RNA (pre-mRNA) and tRNA metabolism, RNA stability and protein translation have been linked to motor neuron diseases. Our study on a mouse carrying a catalytically inactive version of the RNA kinase CLP1, a component of the tRNA splicing endonuclease complex, revealed a neurological disorder characterized by progressive loss of lower spinal motor neurons. Surprisingly, mutant mice accumulate a novel class of tRNA-derived fragments. In addition, patients with homozygous missense mutations in CLP1 (R140H) were recently identified who suffer from severe motor-sensory defects, cortical dysgenesis and microcephaly, and exhibit alterations in transfer RNA (tRNA) splicing. Here, we review functions of CLP1 in different RNA pathways and provide hypotheses on the role of the tRNA splicing machinery in the generation of tRNA fragments and the molecular links to neurodegenerative disorders. We further immerse the biology of tRNA splicing into topics of (t)RNA metabolism and oxidative stress, putting forward the idea that defects in tRNA processing leading to tRNA fragment accumulation might trigger the development of neurodegenerative diseases.

摘要

RNA代谢途径的缺陷是神经退行性疾病公认的病因。参与信使前体RNA(pre-mRNA)和转运RNA(tRNA)代谢、RNA稳定性及蛋白质翻译的基因中的若干突变已与运动神经元疾病相关联。我们对携带RNA激酶CLP1(tRNA剪接内切核酸酶复合物的一个组分)催化失活形式的小鼠进行的研究,揭示了一种以脊髓下部运动神经元进行性丧失为特征的神经疾病。令人惊讶的是,突变小鼠积累了一类新的tRNA衍生片段。此外,最近鉴定出了CLP1发生纯合错义突变(R140H)的患者,他们患有严重的运动感觉缺陷、皮质发育不全和小头畸形,并表现出转运RNA(tRNA)剪接改变。在此,我们综述了CLP1在不同RNA途径中的功能,并就tRNA剪接机制在tRNA片段生成中的作用以及与神经退行性疾病的分子联系提出假设。我们进一步将tRNA剪接生物学融入(t)RNA代谢和氧化应激主题,提出导致tRNA片段积累的tRNA加工缺陷可能引发神经退行性疾病发展的观点。

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