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向导 RNA 支架变体使大型 gRNA 簇的克隆变得容易,从而实现了多重基因编辑。

Guide RNA scaffold variants enabled easy cloning of large gRNA cluster for multiplexed gene editing.

机构信息

National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, College of Horticulture and Forestry Sciences, Huazhong Agricultural University, Wuhan, China.

Hubei Hongshan Laboratory, Wuhan, China.

出版信息

Plant Biotechnol J. 2024 Feb;22(2):460-471. doi: 10.1111/pbi.14198. Epub 2023 Oct 10.

Abstract

Cas9 protein-mediated gene editing has revolutionized genetic manipulation in most organisms. There are many cases where multiplexed gene editing is needed. Cas9 is capable of multiplex gene editing when expressed with multiple guide RNAs. Conventional cloning methods for multiplexed gene editing vector is not efficient due to repeated use of a single-guide RNA scaffold and inefficient ligation. In this study, we conducted structure-guided mutagenesis and random mutagenesis on the original sgRNA scaffold and identified a large number of functional sgRNA scaffold variants. With these scaffold variants and different tRNAs, fusion polymerase chain reaction protocol was developed to rapidly synthesize spacer-scaffold-tRNA-spacer units with up to 9 targets. In conjunction with golden gate cloning, gene editing vectors with up to 24 target sites were efficiently cloned in one-step cloning. One such gene editing vector targeting 12 genes in tomato were tested in stable transformation and 10 out of the 12 genes were found mutated in a single transgenic line. To facilitate the application of multiplexed gene editing using these scaffold variants and tRNAs from different species, a webserver was created to generate primer sets and provide template sequences for the synthesis of large sgRNA expression units based on the user-supplied target sequences and species.

摘要

Cas9 蛋白介导的基因编辑已经彻底改变了大多数生物体中的遗传操作。在许多情况下,需要进行多重基因编辑。当 Cas9 与多个向导 RNA 一起表达时,它能够进行多重基因编辑。由于单个向导 RNA 支架的重复使用和低效连接,传统的用于多重基因编辑载体的克隆方法效率不高。在这项研究中,我们对原始 sgRNA 支架进行了结构引导的突变和随机突变,并鉴定了大量具有功能的 sgRNA 支架变体。利用这些支架变体和不同的 tRNA,我们开发了融合聚合酶链反应方案,以快速合成带有多达 9 个靶标的间隔区-支架-tRNA-间隔区单元。与 Golden Gate 克隆相结合,我们可以在一步克隆中有效地克隆多达 24 个靶位点的基因编辑载体。我们测试了一个针对番茄中 12 个基因的基因编辑载体,在稳定转化中发现 12 个基因中的 10 个发生了突变。为了促进使用这些支架变体和来自不同物种的 tRNA 进行多重基因编辑的应用,我们创建了一个网络服务器,根据用户提供的靶序列和物种,生成用于合成大型 sgRNA 表达单元的引物对,并提供模板序列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35ca/11373940/24d0f099c0b9/PBI-22-460-g003.jpg

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