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通过调控反义U7小核仁RNA表达盒实现强力霉素控制的剪接调控

Doxycycline-controlled splicing modulation by regulated antisense U7 snRNA expression cassettes.

作者信息

Marquis J, Kämpfer S S, Angehrn L, Schümperli D

机构信息

Institute of Cell Biology, University of Bern, Bern, Switzerland.

出版信息

Gene Ther. 2009 Jan;16(1):70-7. doi: 10.1038/gt.2008.138. Epub 2008 Aug 14.

Abstract

Many diseases affect pre-mRNA splicing, and alternative splicing is a major source of proteome diversity and an important mechanism for modulating gene expression. The ability to regulate a specific splicing event is therefore desirable; for example, to understand splicing-associated pathologies. We have developed methods based on modified U7 snRNAs, which allow us to induce efficient skipping or inclusion of selected exons. Here, we have adapted these U7 tools to a regulatable system that relies on a doxycycline-sensitive version of the Krüppel-associated box (KRAB)/KAP1 transcriptional silencing. Co-transduction of target cells with two lentiviral vectors, one carrying the KRAB protein and the other the regulatable U7 cassette, allows a tight regulation of the modified U7 snRNA. No leakage is observed in the repressed state, whereas full induction can be obtained with doxycycline in ng ml(-1) concentrations. Only a few days are necessary for a full switch, and the induction/repression can be repeated over several cycles without noticeable loss of control. Importantly, the U7 expression correlates with splicing correction, as shown for the skipping of an aberrant beta-globin exon created by a thalassaemic mutation and the promotion of exon 7 inclusion in the human SMN2 gene, an important therapeutic target for spinal muscular atrophy.

摘要

许多疾病会影响前体mRNA剪接,可变剪接是蛋白质组多样性的主要来源,也是调节基因表达的重要机制。因此,调控特定剪接事件的能力是很有必要的;例如,用于理解与剪接相关的病理学。我们已经开发出基于修饰的U7小核仁RNA(snRNA)的方法,这使我们能够高效诱导选定外显子的跳跃或包含。在这里,我们将这些U7工具应用于一个可调控系统,该系统依赖于对强力霉素敏感的Krüppel相关框(KRAB)/KAP1转录沉默。用两种慢病毒载体共转导靶细胞,一种携带KRAB蛋白,另一种携带可调控的U7盒,可对修饰的U7 snRNA进行严格调控。在抑制状态下未观察到渗漏,而在纳克每毫升(ng ml(-1))浓度的强力霉素作用下可实现完全诱导。完全转换只需几天时间,诱导/抑制可重复几个周期而不会明显失去控制。重要的是,U7表达与剪接校正相关,如地中海贫血突变产生的异常β-珠蛋白外显子的跳跃以及人运动神经元生存蛋白2(SMN2)基因中外显子7的包含促进所示,SMN2基因是脊髓性肌萎缩症的一个重要治疗靶点。

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