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An optimized lentiviral vector system for conditional RNAi and efficient cloning of microRNA embedded short hairpin RNA libraries

机译:用于条件RNAi的优化慢病毒载体系统和MicroRNA嵌入式短发夹RNA文库的高效克隆

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摘要

RNA interference (RNAi) and CRISPR-Cas9-based screening systems have emerged as powerful and complementary tools to unravel genetic dependencies through systematic gain-and loss-of-function studies. In recent years, a series of technical advances helped to enhance the performance of virally delivered RNAi. For instance, the incorporation of short hairpin RNAs (shRNAs) into endogenous microRNA contexts (shRNAmiRs) allows the use of Tet-regulated promoters for synchronous onset of gene knockdown and precise interrogation of gene dosage effects. However, remaining challenges include lack of efficient cloning strategies, inconsistent knockdown potencies and leaky expression. Here, we present a simple, one-step cloning approach for rapid and efficient cloning of miR-30 shRNAmiR libraries. We combined a human miR-30 backbone retaining native flanking sequences with an optimized all-in-one lentiviral vector system for conditional RNAi to generate a versatile toolbox characterized by higher doxycycline sensitivity, reduced leakiness and enhanced titer. Furthermore, refinement of existing shRNA design rules resulted in substantially improved prediction of powerful shRNAs. Our approach was validated by accurate quantification of the knockdown potency of over 250 single shRNAmiRs. To facilitate access and use by the scientific community, an online tool was developed for the automated design of refined shRNA-coding oligonucleotides ready for cloning into our system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:RNA干扰(RNAi)和基于CRISPR-CAS9的筛选系统通过系统的增益和函数丧失研究,成为强大和互补的工具来解析遗传依赖性。近年来,一系列技术进步有助于提高公测交付RNAi的表现。例如,将短发夹RNA(SHRNA)掺入内源性microRNA上下文(SHRAMIR)允许使用TET调节的启动子进行基因敲低的同步发作,并确切地询问基因剂量效应。然而,剩余的挑战包括缺乏有效的克隆策略,禁止禁止态度不一致,漏洞表达。在这里,我们提出了一种简单的一步的克隆方法,用于快速高效地克隆miR-30 shramir文库。我们将人miR-30骨干骨干序列组合使用优化的一体化慢病毒载体系统,用于有条件的RNAi,以产生具有更高的多屈曲敏感性,降低泄漏和增强滴度的多功能工具箱。此外,现有的ShRNA设计规则的改进导致了强大的SHRNA的预测显着提高。我们的方法是通过精确定量超过250个单次Shramirs的击倒效力来验证。为了促进科学界访问和使用,开发了一种在线工具,用于准备克隆到我们的系统中的精细shRNA编码寡核苷酸的自动化设计。 (c)2017 Elsevier Ltd.保留所有权利。

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