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- W4200216215 abstract "Deciphering gene function requires the ability to control gene expression in space and time. Binary systems such as the Gal4/UAS provide a powerful means to modulate gene expression and to induce loss or gain of function. This is best exemplified in Drosophila, where the Gal4/UAS system has been critical to discover conserved mechanisms in development, physiology, neurobiology, and metabolism, to cite a few. Here we describe a transgenic light-inducible Gal4/UAS system (ShineGal4/UAS) based on Magnet photoswitches. We show that it allows efficient, rapid, and robust activation of UAS-driven transgenes in different tissues and at various developmental stages in Drosophila. Furthermore, we illustrate how ShineGal4 enables the generation of gain and loss-of-function phenotypes at animal, organ, and cellular levels. Thanks to the large repertoire of UAS-driven transgenes, ShineGal4 enriches the Drosophila genetic toolkit by allowing in vivo control of gene expression with high temporal and spatial resolutions." @default.
- W4200216215 created "2021-12-31" @default.
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- W4200216215 date "2021-12-01" @default.
- W4200216215 modified "2023-10-06" @default.
- W4200216215 title "Rapid and robust optogenetic control of gene expression in Drosophila" @default.
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- W4200216215 doi "https://doi.org/10.1016/j.devcel.2021.11.016" @default.
- W4200216215 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/34879263" @default.
- W4200216215 hasPublicationYear "2021" @default.