Flip-out Gal4

Flip-out Gal4 is a Drosophila genetic technique that activates Gal4 in selected cell clones, enabling researchers to visualize or manipulate defined populations during cancer studies. After heat-shock induction, FLP recombinase catalyzes recombination between flanking FRT sites and removes a transcriptional stop cassette, allowing Gal4 expression to drive UAS-linked reporters or cancer-related effectors. This conditional mosaic system supports lineage tracing, clonal analysis, and targeted gene perturbation in developing or tumor-bearing tissues. By revealing how oncogenic mutations alter cell proliferation, survival, invasion, and tissue organization, Flip-out Gal4 helps clarify tumor initiation and progression while providing a flexible platform for testing candidate mechanisms and interventions.

Flip-out Gal4 - 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 - Biology

Patterning of Embryonic Stem Cells Using the Bio Flip Chip

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Cited by 2 •

2007

We demonstrate a simple method for placing cells at desired locations on a substrate. This method patterns cells by flipping a silicone chip containing microwells filled with cells onto the substrate. This method provides a new way to modulate diffusible and juxtacrine signaling between cells.

Laser-induced Forward Transfer for Flip-chip Packaging of Single Dies

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Cited by 5 •

2015

We demonstrate the use of the Laser-induced Forward Transfer (LIFT) technique for flip-chip assembly of optoelectronic components. This approach provides a simple, cost-effective, low-temperature, fast and flexible solution for fine-pitch bumping and bonding on chip-scale for achieving high-density circuits for optoelectronic applications.

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.

Photobleaching Assays (FRAP & FLIP) to Measure Chromatin Protein Dynamics in Living Embryonic Stem Cells

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Cited by 26 •

2011

We describe photobleaching methods including Fluorescence Recovery After Photobleaching (FRAP) and Fluorescence Loss In Photobleaching (FLIP) to monitor chromatin protein dynamics in embryonic stem (ES) cells. Chromatin protein dynamics, which is considered to be one of the means to study chromatin plasticity, is enhanced in pluripotent cells.

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