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基因治疗的进展与前景:通过反式剪接对基因表达进行重编程

Gene therapy progress and prospects: reprograming gene expression by trans-splicing.

作者信息

Mitchell L G, McGarrity G J

机构信息

Intronn Inc., Gaithersburg, MD 20878, USA.

出版信息

Gene Ther. 2005 Oct;12(20):1477-85. doi: 10.1038/sj.gt.3302596.

Abstract

The term 'trans-splicing' encompasses several platform technologies that combine two RNA or protein molecules to generate a new, chimeric product. RNA trans-splicing reprograms the sequences of endogenous messenger mRNA or pre-mRNA, converting them to a new, desired gene product. Trans-splicing has broad applications, depending on the nature of the sequences that are inserted or trans-spliced to the defined target. Trans-splicing RNA therapy offers significant advantages over conventional gene therapy: expression of the trans-spliced sequence is controlled by the endogenous regulation of the target pre-mRNA; reduction or elimination of undesirable ectopic expression; the ability to use smaller constructs that trans-splice only a portion of the gene to be replaced; and the conversion of dominant-negative mutations to wild-type gene products.

摘要

“反式剪接”一词涵盖了多种平台技术,这些技术将两个RNA或蛋白质分子结合起来,生成一种新的嵌合产物。RNA反式剪接可对内源信使mRNA或前体mRNA的序列进行重新编程,将它们转化为一种新的、所需的基因产物。根据插入或反式剪接到特定靶标的序列的性质,反式剪接具有广泛的应用。与传统基因治疗相比,反式剪接RNA疗法具有显著优势:反式剪接序列的表达受靶标前体mRNA的内源调控;减少或消除不良的异位表达;能够使用仅反式剪接待替换基因一部分的较小构建体;以及将显性负性突变转化为野生型基因产物。

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