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A multiplexable TALE-based binary expression system for in vivo cellular interaction studies

机译:用于体内细胞相互作用研究的可复用的基于TALE的二元表达系统

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摘要

Binary expression systems have revolutionised genetic research by enabling delivery of loss-of-function and gain-of-function transgenes with precise spatial-temporal resolution in vivo. However, at present, each existing platform relies on a defined exogenous transcription activator capable of binding a unique recognition sequence. Consequently, none of these technologies alone can be used to simultaneously target different tissues or cell types in the same organism. Here, we report a modular system based on programmable transcription activator-like effector (TALE) proteins, which enables parallel expression of multiple transgenes in spatially distinct tissues in vivo. Using endogenous enhancers coupled to TALE drivers, we demonstrate multiplexed orthogonal activation of several transgenes carrying cognate variable activating sequences (VAS) in distinct neighbouring cell types of the Drosophila central nervous system. Since the number of combinatorial TALE–VAS pairs is virtually unlimited, this platform provides an experimental framework for highly complex genetic manipulation studies in vivo.
机译:二进制表达系统通过在体内以精确的时空分辨率传递功能丧失和功能获得的转基因,已经彻底改变了基因研究。但是,目前,每个现有平台都依赖于能够结合独特识别序列的已定义外源转录激活因子。因此,这些技术都不能单独用于同时针对同一生物体中的不同组织或细胞类型。在这里,我们报告了基于可编程转录激活因子样效应子(TALE)蛋白的模块化系统,该系统能够在体内空间不同的组织中并行表达多个转基因。使用耦合到TALE驱动程序的内源性增强子,我们证明了果蝇中枢神经系统的不同相邻细胞类型中携带关联变量激活序列(VAS)的几个转基因的多重正交激活。由于组合的TALE–VAS对的数量实际上是无限的,因此该平台为体内高度复杂的基因操作研究提供了实验框架。

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