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The Q System: A Repressible Binary System for Transgene Expression,Lineage Tracing, and Mosaic Analysis

机译:Q系统:用于转基因表达,谱系追踪和镶嵌分析的可抑制二元系统

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摘要

We describe a new repressible binary expression system based on the regulatory genes from the Neurospora qa gene cluster. This "0 system" offers attractive features for transgene expression in Drosophila and mammalian cells: low basal expression in the absence of the transcriptional activator QF, high QF-induced expression, and QF repression by its repressor QS. Additionally, feeding flies quinic acid can relieve QS repression. The Q system offers many applications, including (1) intersectional "logic gates" with the GAL4 system for manipulating transgene expression patterns, (2) GAL4-independent MARCM analysis, and (3) coupled MARCM analysis to independently visualize and genetically manipulate siblings from any cell division. We demonstrate the utility of the Q system in determining cell division patterns of a neuronal lineage and gene function in cell growth and proliferation, and in dissecting neurons responsible for olfactory attraction. The Q system can be expanded to other uses in Drosophila and to any organism conducive to transgenesis.
机译:我们描述了基于Neurospora qa基因簇的调控基因的新的可抑制二进制表达系统。该“ 0系统”为果蝇和哺乳动物细胞中的转基因表达提供了诱人的功能:在缺少转录激活因子QF的情况下基础表达低,在QF诱导下的表达高以及通过阻遏物QS抑制QF。此外,喂蝇奎宁酸可以缓解QS抑制。 Q系统提供了许多应用程序,包括(1)与GAL4系统相交的“逻辑门”,以操纵转基因表达模式,(2)GAL4独立的MARCM分析,以及(3)结合的MARCM分析,以独立地可视化和遗传操纵来自任何细胞分裂。我们证明了Q系统在确定神经元谱系的细胞分裂模式和基因功能在细胞生长和增殖以及解剖嗅觉负责的神经元方面的实用性。 Q系统可以扩展到果蝇中的其他用途以及任何有助于转基因的生物。

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