短发夹RNA表达载体的构建与验证策略。

Fang-Jun Jia, Mei Huang, Yuan-Chang Yan, Yi-Ping Li
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引用次数: 0

摘要

应用RNA干扰(RNAi)技术研究基因功能已广泛应用于各种生物系统中。利用DNA载体产生短发夹RNA (shRNA)是RNAi应用的一种常用策略。在这里,我们描述了一步PCR方法,称为反向PCR,用于构建shRNA表达载体。典型地,这对引物以背靠背的方式与环状质粒结合。锚定引物提供定位于PCR片段两端的shRNA正链和反义链模板,避免过早形成发夹构型,有利于PCR扩增和后续克隆。最后,通过单个PCR产物的自连接实现圆形载体的建立。此外,我们的研究结果表明,包含单个限制性内切位点的发夹环具有抗消化能力,而包含双限制性内切位点的发夹环具有活性,这为验证shRNA模板序列创造了最佳策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A strategy for constructing and verifying short hairpin RNA expression vectors.

A strategy for constructing and verifying short hairpin RNA expression vectors.

A strategy for constructing and verifying short hairpin RNA expression vectors.

A strategy for constructing and verifying short hairpin RNA expression vectors.

The application of RNA interference (RNAi) to study gene function is now commonplace in a variety of biological systems. Producing short hairpin RNA (shRNA) by DNA vectors is one popular strategy for RNAi applications. Here, we describe a one-step PCR method, termed reverse PCR, for constructing shRNA expression vectors. Characteristically, the pair of primers binds to circular plasmid in a back-to-back manner. The anchored primers provide the templates of shRNA sense strand and antisense strand locating to the two separate ends of PCR segment, which will benefit the PCR amplification and subsequent cloning by avoiding premature formation of a hairpin configuration. Finally, the establishment of a circular vector is achieved by self-ligation of the single PCR product. In addition, our results indicated that the hairpin loop including a single restriction site is resistant to digestion, while inclusion of twin restriction sites in the loop leads to activity, creating an optimal strategy for verifying sequences of shRNA template.

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