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分裂内含肽Gal4提供了一种可被Gal80完全抑制的交叉遗传标记。

split-intein Gal4 provides intersectional genetic labeling that is fully repressible by Gal80.

作者信息

Ewen-Campen Ben, Luan Haojiang, Xu Jun, Singh Rohit, Joshi Neha, Thakkar Tanuj, Berger Bonnie, White Benjamin H, Perrimon Norbert

机构信息

These authors contributed equally.

Department of Genetics, Blavatnik Institute, Harvard Medical School, Boston, MA 02115, USA.

出版信息

bioRxiv. 2023 Mar 24:2023.03.24.534001. doi: 10.1101/2023.03.24.534001.

Abstract

UNLABELLED

The split-Gal4 system allows for intersectional genetic labeling of highly specific cell-types and tissues in . However, the existing split-Gal4 system, unlike the standard Gal4 system, cannot be repressed by Gal80, and therefore cannot be controlled temporally. This lack of temporal control precludes split-Gal4 experiments in which a genetic manipulation must be restricted to specific timepoints. Here, we describe a new split-Gal4 system based on a self-excising split-intein, which drives transgene expression as strongly as the current split-Gal4 system and Gal4 reagents, yet which is fully repressible by Gal80. We demonstrate the potent inducibility of "split-intein Gal4" using both fluorescent reporters and via reversible tumor induction in the gut. Further, we show that our split-intein Gal4 can be extended to the drug-inducible GeneSwitch system, providing an independent method for intersectional labeling with inducible control. We also show that the split-intein Gal4 system can be used to generate highly cell-type specific genetic drivers based on predictions generated by single cell RNAseq (scRNAseq) datasets, and we describe a new algorithm ("Two Against Background" or TAB) to predict cluster-specific gene pairs across multiple tissue-specific scRNA datasets. We provide a plasmid toolkit to efficiently create split-intein Gal4 drivers based on either CRISPR knock-ins to target genes or using enhancer fragments. Altogether, the split-intein Gal4 system allows for the creation of highly specific intersectional genetic drivers that are inducible/repressible.

SIGNIFICANCE STATEMENT

The split-Gal4 system allows researchers to drive transgene expression with extraordinary cell type specificity. However, the existing split-Gal4 system cannot be controlled temporally, and therefore cannot be applied to many important areas of research. Here, we present a new split-Gal4 system based on a self-excising split-intein, which is fully controllable by Gal80, as well as a related drug-inducible split GeneSwitch system. This approach can both leverage and inform single-cell RNAseq datasets, and we introduce an algorithm to identify pairs of genes that precisely and narrowly mark a desired cell cluster. Our split-intein Gal4 system will be of value to the research community, and allow for the creation of highly specific genetic drivers that are also inducible/repressible.

摘要

未标记

分裂型Gal4系统可对特定细胞类型和组织进行交叉遗传标记。然而,现有的分裂型Gal4系统与标准Gal4系统不同,不能被Gal80抑制,因此无法进行时间控制。这种缺乏时间控制的情况排除了在遗传操作必须限制在特定时间点的分裂型Gal4实验。在此,我们描述了一种基于自切割分裂内含肽的新型分裂型Gal4系统,它驱动转基因表达的强度与当前的分裂型Gal4系统和Gal4试剂相同,但可被Gal80完全抑制。我们使用荧光报告基因以及通过肠道中可逆性肿瘤诱导证明了“分裂内含肽Gal4”的强大诱导性。此外,我们表明我们的分裂内含肽Gal4可以扩展到药物诱导的基因开关系统,提供了一种具有诱导控制的交叉标记独立方法。我们还表明,分裂内含肽Gal4系统可用于基于单细胞RNA测序(scRNAseq)数据集生成的预测来产生高度细胞类型特异性的遗传驱动因子,并且我们描述了一种新算法(“双抗背景”或TAB)来预测跨多个组织特异性scRNA数据集的簇特异性基因对。我们提供了一个质粒工具包,可基于对靶基因的CRISPR敲入或使用增强子片段有效地创建分裂内含肽Gal4驱动因子。总之,分裂内含肽Gal4系统允许创建可诱导/可抑制的高度特异性交叉遗传驱动因子。

意义声明

分裂型Gal4系统使研究人员能够以非凡的细胞类型特异性驱动转基因表达。然而,现有的分裂型Gal4系统无法进行时间控制,因此不能应用于许多重要的研究领域。在此,我们提出了一种基于自切割分裂内含肽的新型分裂型Gal4系统,它可由Gal80完全控制,以及一种相关的药物诱导分裂基因开关系统。这种方法既可以利用单细胞RNA测序数据集,也可以为其提供信息,并且我们引入了一种算法来识别精确且狭窄地标记所需细胞簇的基因对。我们的分裂内含肽Gal4系统将对研究界有价值,并允许创建也可诱导/可抑制的高度特异性遗传驱动因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ae8/10055387/020fcd0043ce/nihpp-2023.03.24.534001v1-f0001.jpg

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