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[神经疾病中的RNA病理学]

[RNA pathologies in neurological disorders].

作者信息

Ohno Kinji

机构信息

Division of Neurogenetics and Bioinformatics, Center for Neurological Diseases and Cancer, Nagoya University Graduate School of Medicine.

出版信息

Rinsho Shinkeigaku. 2007 Nov;47(11):801-4.

Abstract

RNA is not a simple intermediate between DNA and proteins. RNA is widely transcribed from a variety of genomic regions, and researchers are extensively exploring the functional roles and the regulations of non-coding RNAs and small RNAs including siRNAs and mRNAs. In addition, the human genome project disclosed that we humans carry as few as approximately 22,000 genes. Humans employ tissue-specific and developmental stage-specific alternative splicing to generate a large variety of proteins in a specific cell at a specific developmental stage. Neurological disorders are not the exceptions that can escape from aberrations of the splicing machinery. A large variety of neurological disorders is causally associated with RNA pathologies, but this lecture was mostly focused on aberrant splicings due to pathological alterations of splicing cis- and trans-elements. The neurological diseases covered include congenital myasthenic syndromes, genetic forms of Parkinson's disease, spastic paraplegia, myotonic dystrophy types 1 and 2, sporadic Alzheimer's disease, facioscapulohumeral dystrophy, fragile X-associated tremor/ ataxia syndrome, Rett syndrome, Prader-Willi syndrome, spinocerebellar atrophy type 8, and Waardenburg-Shah syndrome. Potential therapeutic modalities targeting RNA are addressed on congenital myasthenic syndromes, Duchenne muscular dystrophy, spinal muscular atrophy, and familial dysautonomia.

摘要

RNA并非DNA与蛋白质之间简单的中间体。RNA广泛转录自各种基因组区域,研究人员正在广泛探索非编码RNA和小RNA(包括小干扰RNA和信使RNA)的功能作用及调控机制。此外,人类基因组计划揭示,人类携带的基因数量少至约22000个。人类利用组织特异性和发育阶段特异性的可变剪接,在特定发育阶段的特定细胞中产生大量不同的蛋白质。神经系统疾病也不例外,无法逃脱剪接机制的异常。多种神经系统疾病与RNA病理相关,但本讲座主要聚焦于由于剪接顺式和反式元件的病理改变导致的异常剪接。所涵盖的神经系统疾病包括先天性肌无力综合征、帕金森病的遗传形式、痉挛性截瘫、1型和2型强直性肌营养不良、散发性阿尔茨海默病、面肩肱型肌营养不良、脆性X相关震颤/共济失调综合征、雷特综合征、普拉德-威利综合征、8型脊髓小脑萎缩以及瓦登伯革-沙阿综合征。针对先天性肌无力综合征、杜氏肌营养不良、脊髓性肌萎缩和家族性自主神经功能异常,探讨了靶向RNA的潜在治疗方式。

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