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使用磷酰二胺吗啉代寡聚物优化反义寡核苷酸。

Optimizing antisense oligonucleotides using phosphorodiamidate morpholino oligomers.

作者信息

Popplewell Linda J, Malerba Alberto, Dickson George

机构信息

School of Biological Sciences, Royal Holloway, University of London, London, UK.

出版信息

Methods Mol Biol. 2012;867:143-67. doi: 10.1007/978-1-61779-767-5_10.

DOI:10.1007/978-1-61779-767-5_10
PMID:22454060
Abstract

Duchenne muscular dystrophy (DMD) is caused by mutations that disrupt the reading frame of the human DMD gene. Selective removal of exons flanking an out-of-frame DMD mutation can result in an in-frame mRNA transcript that may be translated into an internally deleted Becker muscular dystrophy-like functionally active dystrophin protein with therapeutic activity. Antisense oligonucleotides (AOs) can be designed to bind to complementary sequences in the targeted mRNA and modify pre-mRNA splicing to correct the reading frame of a mutated transcript. AO-induced exon skipping resulting in functional truncated dystrophin has been demonstrated in animal models of DMD both in vitro and in vivo, in DMD patient cells in vitro in culture, and in DMD muscle explants. The recent advances made in this field suggest that it is likely that AO-induced exon skipping will be the first gene therapy for DMD to reach the clinic. However, it should be noted that personalized molecular medicine may be necessary, since the various reading frame-disrupting mutations are spread across the DMD gene. The different deletions that cause DMD would require skipping of different exons, which would require the optimization and clinical trial workup of many specific AOs. This chapter describes the methodologies available for the optimization of AOs, in particular phosphorodiamidate morpholino oligomers, for the targeted skipping of specific exons on the DMD gene.

摘要

杜兴氏肌肉营养不良症(DMD)是由破坏人类DMD基因阅读框的突变引起的。选择性去除框外DMD突变侧翼的外显子可产生框内mRNA转录本,该转录本可被翻译成具有治疗活性的内部缺失的贝克尔肌肉营养不良症样功能活性抗肌萎缩蛋白。反义寡核苷酸(AO)可设计为与靶向mRNA中的互补序列结合,并修饰前体mRNA剪接以校正突变转录本的阅读框。在DMD的动物模型中,无论是体外还是体内,在体外培养的DMD患者细胞中,以及在DMD肌肉外植体中,均已证明AO诱导的外显子跳跃可产生功能性截短的抗肌萎缩蛋白。该领域的最新进展表明,AO诱导的外显子跳跃很可能是第一种进入临床的DMD基因疗法。然而,应该注意的是,由于各种破坏阅读框的突变分布在DMD基因中,可能需要个性化分子医学。导致DMD的不同缺失需要跳过不同的外显子,这将需要对许多特定AO进行优化和临床试验检查。本章描述了用于优化AO(特别是磷酰二胺吗啉代寡聚物)以靶向跳过DMD基因上特定外显子的可用方法。

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Methods Mol Biol. 2012;867:143-67. doi: 10.1007/978-1-61779-767-5_10.
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