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GB_SynP:一种模块化的 dCas9 调控的合成启动子集合,用于在植物中精细调控重组基因表达。

GB_SynP: A Modular dCas9-Regulated Synthetic Promoter Collection for Fine-Tuned Recombinant Gene Expression in Plants.

机构信息

Instituto de Biología Molecular y Celular de Plantas (IBMCP), Consejo Superior de Investigaciones Científicas, Universidad Politécnica de Valencia, Camino de Vera s/n, Valencia 46022, Spain.

出版信息

ACS Synth Biol. 2022 Sep 16;11(9):3037-3048. doi: 10.1021/acssynbio.2c00238. Epub 2022 Aug 31.

Abstract

Programmable transcriptional factors based on the CRISPR architecture are becoming commonly used in plants for endogenous gene regulation. In plants, a potent CRISPR tool for gene induction is the so-called dCasEV2.1 activation system, which has shown remarkable genome-wide specificity combined with a strong activation capacity. To explore the ability of dCasEV2.1 to act as a transactivator for orthogonal synthetic promoters, a collection of DNA parts was created (GB_SynP) for combinatorial synthetic promoter building. The collection includes (i) minimal promoter parts with the TATA box and 5'UTR regions, (ii) proximal parts containing single or multiple copies of the target sequence for the gRNA, thus functioning as regulatory cis boxes, and (iii) sequence-randomized distal parts that ensure the adequate length of the resulting promoter. A total of 35 promoters were assembled using the GB_SynP collection, showing in all cases minimal background and predictable activation levels depending on the proximal parts used. GB_SynP was also employed in a combinatorial expression analysis of an autoluminescence pathway in , showing the value of this tool in extracting important biological information such as the determination of the limiting steps in an enzymatic pathway.

摘要

基于 CRISPR 架构的可编程转录因子在植物中被广泛用于内源基因调控。在植物中,一种有效的 CRISPR 基因诱导工具是所谓的 dCasEV2.1 激活系统,该系统结合了强大的激活能力,表现出了显著的全基因组特异性。为了探索 dCasEV2.1 作为正交合成启动子转录激活子的能力,我们创建了一套 DNA 元件(GB_SynP)用于组合合成启动子的构建。该集合包括:(i)具有 TATA 盒和 5'UTR 区的最小启动子元件;(ii)包含目标序列的单个或多个拷贝的近端元件,因此作为调控顺式盒发挥作用;(iii)序列随机化的远端元件,以确保产生的启动子具有足够的长度。总共使用 GB_SynP 集合组装了 35 个启动子,在所有情况下,根据使用的近端元件,都表现出最小的背景和可预测的激活水平。GB_SynP 还用于组合表达分析 中的自体发光途径,展示了该工具在提取重要生物学信息方面的价值,例如确定酶途径中的限制步骤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c219/9486966/7a8e65c87d33/sb2c00238_0001.jpg

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