Suppr超能文献

人类线粒体tRNALeu(UUR)中的一个致病相关突变导致3'-末端加工和CCA添加减少。

A pathogenesis-associated mutation in human mitochondrial tRNALeu(UUR) leads to reduced 3'-end processing and CCA addition.

作者信息

Levinger Louis, Oestreich Isabel, Florentz Catherine, Mörl Mario

机构信息

York College/CUNY, Jamaica, NY 11451, USA.

出版信息

J Mol Biol. 2004 Mar 26;337(3):535-44. doi: 10.1016/j.jmb.2004.02.008.

Abstract

Point mutations in mitochondrial tRNAs can cause severe multisystemic disorders such as mitochondrial encephalomyopathy with lactic acidosis and stroke-like episodes (MELAS) and myoclonus epilepsy with ragged-red fibers (MERRF). Some of these mutations impair one or more steps of tRNA maturation and protein biosynthesis including 5'-end-processing, post-transcriptional base modification, structural stability, aminoacylation, and formation of tRNA-ribosomal complexes. tRNALeu(UUR), an etiologic hot spot for such diseases, harbors 20 of more than 90 disease-associated mutations described to date. Here, the pathogenesis-associated base substitutions A3243G, T3250C, T3271C, A3302G and C3303T within this tRNA were tested for their effects on endonucleolytic 3'-end processing and CCA addition at the tRNA 3'-terminus. Whereas mutations A3243G, A3302G and C3303T reduced the efficiency of 3'-end cleavage, only the C3303T substitution was a less efficient substrate for CCA addition. These results support the view that pathogenesis may be elicited through cumulative effects of tRNA mutations: a mutation can impede several pre-tRNA processing steps, with each such reduction contributing to the overall impairment of tRNA function.

摘要

线粒体tRNA中的点突变可导致严重的多系统疾病,如伴有乳酸性酸中毒和中风样发作的线粒体脑肌病(MELAS)以及伴有破碎红纤维的肌阵挛性癫痫(MERRF)。其中一些突变会损害tRNA成熟和蛋白质生物合成的一个或多个步骤,包括5'-末端加工、转录后碱基修饰、结构稳定性、氨酰化以及tRNA-核糖体复合物的形成。tRNALeu(UUR)是此类疾病的一个病因热点,迄今已描述的90多种与疾病相关的突变中有20种存在于此。在此,对该tRNA内与发病机制相关的碱基替换A3243G、T3250C、T3271C、A3302G和C3303T在tRNA 3'-末端的内切核酸酶3'-末端加工和CCA添加方面的作用进行了测试。虽然突变A3243G、A3302G和C3303T降低了3'-末端切割的效率,但只有C3303T替换是CCA添加效率较低的底物。这些结果支持这样一种观点,即发病机制可能是由tRNA突变的累积效应引发的:一个突变可能会阻碍几个前体tRNA加工步骤,每一次这样的减少都会导致tRNA功能的整体受损。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验