Gal4 Drivers

Gal4 drivers are genetic tools that direct transgene expression to selected cells or tissues, enabling precise control of gene activity in model organisms such as Drosophila. They use the yeast Gal4 transcription factor, produced under a tissue-specific promoter, to bind upstream activating sequences (UAS) and activate a linked responder gene in the same cells. In neuroscience, this system can label neuronal populations, manipulate their activity, or alter gene expression for targeted experiments. By combining different driver and UAS lines, researchers investigate neural circuits, behavior, development, and disease mechanisms with greater cellular specificity than broad genetic approaches.

Gal4 Drivers - Related Videos

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.

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.

Assembly and Characterization of an External Driver for the Generation of Sub-Kilohertz Oscillatory Flow in Microchannels

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2022

The protocol demonstrates a convenient method to produce harmonic oscillatory flow from 10-1000 Hz in microchannels. This is performed by interfacing a computer-controlled speaker diaphragm to the microchannel in a modular manner.

Discovery of Driver Genes in Colorectal HT29-derived Cancer Stem-Like Tumorspheres

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Cited by 1 •

2020

Presented here is a protocol to discover the overexpressed driver genes maintaining the established cancer stem-like cells derived from colorectal HT29 cells. RNAseq with available bioinformatics was performed to investigate and screen gene expression networks for elucidating a potential mechanism involved in the survival of targeted tumor cells.

Investigating Drivers of Antireward in Addiction Behavior with Anatomically Specific Single-Cell Gene Expression Methods

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Cited by 1 •

2022

The combination of laser capture microdissection and microfluidic RT-qPCR provides anatomic and biotechnical specificity in measuring the transcriptome in single neurons and glia. Applying creative methods with a system's biology approach to psychiatric disease may lead to breakthroughs in understanding and treatment such as the neuroinflammation antireward hypothesis in addiction.

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