Gal4-uas System

The Gal4-UAS system is a modular genetic expression system that enables researchers to control where and when a selected gene is active, making it a powerful tool for studying gene function in biology. It separates expression control into two components: the Gal4 transcription factor binds upstream activating sequences (UAS) and activates a linked responder gene, while tissue-specific or inducible Gal4 drivers determine the pattern and timing of expression. In model organisms such as Drosophila, researchers combine these components to label cells, alter gene activity, express reporters, or manipulate neuronal circuits. This targeted approach supports studies of development, physiology, behavior, and disease while reducing effects in tissues that do not express Gal4.

Gal4-uas System - Related Videos

Research

JoVE Journal - Genetics

Using the GAL4-UAS System for Functional Genetics in Anopheles gambiae

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Cited by 11 •

2021

The bipartite GAL4-UAS system is a versatile tool for modification of gene expression in a controlled spatiotemporal manner which permits functional genetic analysis in Anopheles gambiae. The procedures described for using this system are a semi-standardized cloning strategy, sexing and screening of pupae for fluorescent protein markers and embryo fixation.

Research

JoVE Journal - Developmental Biology
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Live Imaging of Innate Immune and Preneoplastic Cell Interactions Using an Inducible Gal4/UAS Expression System in Larval Zebrafish Skin

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Cited by 9 •

2015

Studying the earliest events of preneoplastic cell progression and innate immune cell interaction is pivotal to understand and treat cancer. Here we describe a method to conditionally induce epithelial cell transformations and the subsequent live imaging of innate immune cell interaction with HRASG12V expressing skin cells in zebrafish larvae.

Research

JoVE Journal - Biology
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Gene Trapping Using Gal4 in Zebrafish

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Cited by 19 •

2013

This protocol describes the method of gene trap insertional mutagenesis using Gal4-VP16 as the primary reporter and GFP/RFP as secondary reporters in zebrafish. Approximately one in ten high-expressing F0 fish yield gene trap progeny co-expressing GFP and RFP. The screening procedure can be readily scaled to adapt to the size of the laboratory performing the insertional mutagenesis screen.

CRISPR-Based Modular Assembly for High-Throughput Construction of a UAS-cDNA/ORF Plasmid Library

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Cited by 1 •

2024

We present a protocol for CRISPR-based modular assembly (CRISPRmass), a method for high-throughput construction of UAS-cDNA/ORF plasmid library in Drosophila using publicly available cDNA/ORF resources. CRISPRmass can be applied to editing various plasmid libraries.

Education

JoVE Science Education - Basic Biology

Drosophila Development and Reproduction

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2023

One of the many reasons that make Drosophila an extremely valuable organism is that the molecular, cellular, and genetic foundations of development are highly conserved between flies and higher eukaryotes such as humans. Drosophila progress through several developmental stages in a process known as the life cycle and each stage provides a unique platform for developmental research. This video introduces each stage of the Drosophila life cycle and details the physical characteristics and major...

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