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遗传性神经肌肉疾病中的 RNA 靶向:纠正剪接错误的新型治疗策略。

RNA Targeting in Inherited Neuromuscular Disorders: Novel Therapeutic Strategies to Counteract Mis-Splicing.

机构信息

Laboratory of Molecular and Cellular Neurobiology, Fondazione Santa Lucia, CERC, 00143 Rome, Italy.

Department of Movement, Human and Health Sciences, University of Rome Foro Italico, Piazza Lauro de Bosis 6, 00135 Rome, Italy.

出版信息

Cells. 2021 Oct 22;10(11):2850. doi: 10.3390/cells10112850.

Abstract

Neuromuscular disorders represent multifaceted abnormal conditions, with little or no cure, leading to patient deaths from complete muscle wasting and atrophy. Despite strong efforts in the past decades, development of effective treatments is still urgently needed. Advent of next-generation sequencing technologies has allowed identification of novel genes and mutations associated with neuromuscular pathologies, highlighting splicing defects as essential players. Deciphering the significance and relative contributions of defective RNA metabolism will be instrumental to address and counteract these malignancies. We review here recent progress on the role played by alternative splicing in ensuring functional neuromuscular junctions (NMJs), and its involvement in the pathogenesis of NMJ-related neuromuscular disorders, with particular emphasis on congenital myasthenic syndromes and muscular dystrophies. We will also discuss novel strategies based on oligonucleotides designed to bind their cognate sequences in the RNA or targeting intermediary of mRNA metabolism. These efforts resulted in several chemical classes of RNA molecules that have recently proven to be clinically effective, more potent and better tolerated than previous strategies.

摘要

神经肌肉疾病表现为多种异常状况,目前几乎无法治愈,会导致患者因肌肉完全消耗和萎缩而死亡。尽管过去几十年来付出了巨大努力,但仍迫切需要开发有效的治疗方法。新一代测序技术的出现使人们能够识别与神经肌肉病理相关的新基因和突变,突显了剪接缺陷作为关键因素的重要性。阐明缺陷 RNA 代谢的意义和相对贡献对于解决和对抗这些恶性疾病至关重要。我们在这里回顾了选择性剪接在确保功能性神经肌肉接头(NMJ)中的作用及其在 NMJ 相关神经肌肉疾病发病机制中的作用,特别强调了先天性肌无力综合征和肌肉营养不良症。我们还将讨论基于设计用于结合 RNA 中其同源序列或靶向 mRNA 代谢中间产物的寡核苷酸的新型策略。这些努力产生了几种 RNA 分子的化学类别,它们最近已被证明在临床上有效,比以前的策略更有效、更强且更耐受。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06d2/8616048/c7112dc544f6/cells-10-02850-g001.jpg

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