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考虑可变剪接的计算性小干扰RNA设计

Computational siRNA design considering alternative splicing.

作者信息

Kim Young J

机构信息

Department of Functional Genomics, University of Science & Technology (UST), Daejeon, Korea.

出版信息

Methods Mol Biol. 2010;623:81-92. doi: 10.1007/978-1-60761-588-0_5.

Abstract

RNA interference (RNAi) with small interfering RNA (siRNA) has become a powerful tool in functional and medical genomic research through directed post-transcriptional gene silencing. In order to apply RNAi technique to eukaryotic organisms, where frequent alternative splicing results in diversification of mRNAs and finally of proteins, we need spliced mRNA isoform silencing to study the function of individual proteins. AsiDesigner is a web-based siRNA design software system, which provides siRNA design capability to account for alternative splicing in mRNA level gene silencing. It provides numerous novel functions, including designing common siRNAs for the silencing of more than two mRNAs simultaneously, a scoring scheme to evaluate the performance of designed siRNAs by adopting state-of-the-art design factors, stepwise off-target searching with BLAST and FASTA algorithms, as well as checking the folding secondary structure energy of siRNAs. To do this, we developed a novel algorithm to evaluate the common target region where siRNAs can be designed to knockdown a specific mRNA isoform or more than two mRNA isoforms from a target gene simultaneously. The developed algorithm and the AsiDesigner were tested and validated as being very effective throughout widely performed gene silencing experiments. It is expected that AsiDesigner will play an important role in functional genomics, drug discovery, and other molecular biological research. AsiDesigner is freely accessible at http://sysbio.kribb.re.kr/AsiDesigner .

摘要

通过小干扰RNA(siRNA)进行的RNA干扰(RNAi),已通过定向转录后基因沉默成为功能基因组学和医学基因组学研究中的一项强大工具。为了将RNAi技术应用于真核生物,在真核生物中频繁的可变剪接会导致mRNA多样化,最终导致蛋白质多样化,我们需要对剪接后的mRNA异构体进行沉默,以研究单个蛋白质的功能。AsiDesigner是一个基于网络的siRNA设计软件系统,它提供了在mRNA水平基因沉默中考虑可变剪接的siRNA设计能力。它提供了许多新颖的功能,包括设计可同时沉默两个以上mRNA的通用siRNA、采用最新设计因素评估设计的siRNA性能的评分方案、使用BLAST和FASTA算法进行逐步脱靶搜索,以及检查siRNA的折叠二级结构能量。为此,我们开发了一种新颖的算法,用于评估通用靶区域,在该区域可以设计siRNA以同时敲低来自靶基因的特定mRNA异构体或两个以上的mRNA异构体。在广泛进行的基因沉默实验中,所开发的算法和AsiDesigner经过测试和验证,证明非常有效。预计AsiDesigner将在功能基因组学、药物发现和其他分子生物学研究中发挥重要作用。可通过http://sysbio.kribb.re.kr/AsiDesigner免费访问AsiDesigner。

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