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基于 CRISPR 的模块化组装,用于高通量构建 UAS-cDNA/ORF 质粒文库。

CRISPR-Based Modular Assembly for High-Throughput Construction of a UAS-cDNA/ORF Plasmid Library.

机构信息

Clinical Research Institute, The Affiliated Nanhua Hospital, Hengyang Medical School, University of South China; Department of Neurology, The Affiliated Nanhua Hospital, Hengyang Medical School, University of South China.

Clinical Research Institute, The Affiliated Nanhua Hospital, Hengyang Medical School, University of South China; Department of Clinical Laboratory, The Affiliated Nanhua Hospital, Hengyang Medical School, University of South China.

出版信息

J Vis Exp. 2024 May 17(207). doi: 10.3791/66581.

Abstract

Functional genomics screening offers a powerful approach to probe gene function and relies on the construction of genome-wide plasmid libraries. Conventional approaches for plasmid library construction are time-consuming and laborious. Therefore, we recently developed a simple and efficient method, CRISPR-based modular assembly (CRISPRmass), for high-throughput construction of a genome-wide upstream activating sequence-complementary DNA/open reading frame (UAS-cDNA/ORF) plasmid library. Here, we present a protocol for CRISPRmass, taking as an example the construction of a GAL4/UAS-based UAS-cDNA/ORF plasmid library. The protocol includes massively parallel two-step test tube reactions followed by bacterial transformation. The first step is to linearize the existing complementary DNA (cDNA) or open reading frame (ORF) cDNA or ORF library plasmids by cutting the shared upstream vector sequences adjacent to the 5' end of cDNAs or ORFs using CRISPR/Cas9 together with single guide RNA (sgRNA), and the second step is to insert a UAS module into the linearized cDNA or ORF plasmids using a single step reaction. CRISPRmass allows the simple, fast, efficient, and cost-effective construction of various plasmid libraries. The UAS-cDNA/ORF plasmid library can be utilized for gain-of-function screening in cultured cells and for constructing a genome-wide transgenic UAS-cDNA/ORF library in Drosophila.

摘要

功能基因组学筛选提供了一种强大的方法来探测基因功能,并依赖于构建全基因组质粒文库。传统的质粒文库构建方法既耗时又费力。因此,我们最近开发了一种简单高效的方法,即基于 CRISPR 的模块化组装(CRISPRmass),用于高通量构建全基因组上游激活序列互补 DNA/开放阅读框(UAS-cDNA/ORF)质粒文库。在这里,我们以构建基于 GAL4/UAS 的 UAS-cDNA/ORF 质粒文库为例,介绍了 CRISPRmass 的实验方案。该方案包括大规模平行两步试管反应,随后进行细菌转化。第一步是使用 CRISPR/Cas9 结合单指导 RNA(sgRNA)切割与 cDNA 或 ORF5' 端相邻的共享上游载体序列,线性化现有的 cDNA 或开放阅读框(ORF)cDNA 或 ORF 文库质粒,第二步是使用一步反应将 UAS 模块插入线性化的 cDNA 或 ORF 质粒中。CRISPRmass 允许简单、快速、高效和具有成本效益地构建各种质粒文库。UAS-cDNA/ORF 质粒文库可用于培养细胞中的功能获得性筛选,也可用于构建果蝇全基因组转基因 UAS-cDNA/ORF 文库。

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