Therapeutic potential of splice-switching oligonucleotides.

John A. Bauman, Natee Jearawiriyapaisarn, R. Kole
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引用次数: 139

Abstract

Alternative splicing enables a single pre-messenger RNA transcript to yield multiple protein isoforms, making it a major contributor to the diversity of the proteome. While this process is essential for normal development, aberrations in alternative splicing are the cause of a multitude of human diseases. Methods for manipulating alternative splicing would thus be of therapeutic value. Chemically modified antisense oligonucleotides that alter alternative splicing by directing splice site selection have been developed to achieve this end. These splice-switching oligonucleotides (SSOs) have been applied to correct aberrant splicing, induce expression of a therapeutic splice variant, or induce expression of a novel therapeutic splice variant in a number of disease-relevant genes. Recently, in vivo efficacy of SSOs has been reported using animal disease models, as well as in results from the first clinical trial.
剪接开关寡核苷酸的治疗潜力。
选择性剪接使单个前信使RNA转录物产生多种蛋白质亚型,使其成为蛋白质组多样性的主要贡献者。虽然这一过程对正常发育至关重要,但选择性剪接的畸变是许多人类疾病的原因。因此,操纵选择性剪接的方法将具有治疗价值。化学修饰的反义寡核苷酸通过指导剪接位点的选择来改变备选剪接,从而实现这一目的。这些剪接开关寡核苷酸(SSOs)已被应用于纠正异常剪接,诱导治疗剪接变异的表达,或诱导一些疾病相关基因中新的治疗剪接变异的表达。最近,利用动物疾病模型和首次临床试验的结果报道了SSOs的体内疗效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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