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基于 Gateway 克隆的短发夹状载体 pDESTsplice 和 pSpliceExpress 分析疾病相关可变剪接事件的原理及实用考虑因素

Principles and Practical Considerations for the Analysis of Disease-Associated Alternative Splicing Events Using the Gateway Cloning-Based Minigene Vectors pDESTsplice and pSpliceExpress.

机构信息

Division of Neuroimmunology, Department of Neurology, Rostock University Medical Center, Gehlsheimer Street 20, 18147 Rostock, Germany.

Rostock University Medical Center, Institute of Immunology, Schillingallee 70, 18057 Rostock, Germany.

出版信息

Int J Mol Sci. 2021 May 13;22(10):5154. doi: 10.3390/ijms22105154.

Abstract

Splicing is an important RNA processing step. Genetic variations can alter the splicing process and thereby contribute to the development of various diseases. Alterations of the splicing pattern can be examined by gene expression analyses, by computational tools for predicting the effects of genetic variants on splicing, and by splicing reporter minigene assays for studying alternative splicing events under defined conditions. The minigene assay is based on transient transfection of cells with a vector containing a genomic region of interest cloned between two constitutive exons. Cloning can be accomplished by the use of restriction enzymes or by site-specific recombination using Gateway cloning. The vectors pDESTsplice and pSpliceExpress represent two minigene systems based on Gateway cloning, which are available through the Addgene plasmid repository. In this review, we describe the features of these two splicing reporter minigene systems. Moreover, we provide an overview of studies in which determinants of alternative splicing were investigated by using pDESTsplice or pSpliceExpress. The studies were reviewed with regard to the investigated splicing regulatory events and the experimental strategy to construct and perform a splicing reporter minigene assay. We further elaborate on how analyses on the regulation of RNA splicing offer promising prospects for gaining important insights into disease mechanisms.

摘要

剪接是一个重要的 RNA 加工步骤。遗传变异可以改变剪接过程,从而导致各种疾病的发生。剪接模式的改变可以通过基因表达分析、预测遗传变异对剪接影响的计算工具以及在特定条件下研究选择性剪接事件的剪接报告基因小基因测定来检测。小基因测定基于用含有感兴趣基因组区域的载体瞬时转染细胞,该区域克隆在两个组成型外显子之间。克隆可以通过使用限制性内切酶或使用基于 Gateway 克隆的位点特异性重组来完成。pDESTsplice 和 pSpliceExpress 是基于 Gateway 克隆的两个小基因系统,可通过 Addgene 质粒库获得。在这篇综述中,我们描述了这两种剪接报告基因系统的特点。此外,我们还概述了使用 pDESTsplice 或 pSpliceExpress 研究选择性剪接决定因素的研究。我们根据所研究的剪接调控事件以及构建和进行剪接报告基因小基因测定的实验策略对这些研究进行了回顾。我们进一步阐述了 RNA 剪接调控分析如何为深入了解疾病机制提供有希望的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13b8/8152502/6ece43a6bdb6/ijms-22-05154-g001.jpg

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