Egfp Expression Detection

EGFP expression detection is the measurement of enhanced green fluorescent protein production to determine whether a gene or genetic construct is active in cells. EGFP acts as a genetically encoded reporter: after translation and folding, its internal chromophore forms and emits green fluorescence when excited with appropriate light, allowing expression to be observed by fluorescence microscopy, plate readers, or flow cytometry. In bioengineering, this approach supports promoter characterization, transfection assessment, gene regulation studies, and tracking of engineered cells over time. Fluorescence intensity can provide a practical readout of expression, although it may also depend on protein maturation, cell state, and measurement conditions.

Egfp Expression Detection - Related Videos

Research

JoVE Journal - Genetics

Development of Leishmania Species Strains with Constitutive Expression of eGFP

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2023

Here, we describe the methodology used for generating L. panamensis and L. donovani strains expressing the gene for eGFP as a stable integrated transgene using the pLEXSY system. Transfected parasites were cloned by limiting dilution, and clones with the highest fluorescence intensity in both species were selected for further use in drug screening assays.

Propagating and Detecting an Infectious Molecular Clone of Maedi-visna Virus that Expresses Green Fluorescent Protein

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Cited by 1 •

2011

We describe a molecular clone of maedi-visna virus that expresses GFP and is fully infectious. Replication of this virus can be detected by using fluorescence microscopy and flow cytometry.

Reliable Identification of Living Dopaminergic Neurons in Midbrain Cultures Using RNA Sequencing and TH-promoter-driven eGFP Expression

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Cited by 9 •

2017

In Parkinson's Disease (PD), Substantia Nigra (SNc) dopaminergic neurons degenerate, leading to motor dysfunction. Here we report a protocol for culturing ventral midbrain neurons from a mouse expressing eGFP driven by a Tyrosine Hydroxylase (TH) promoter sequence, harvesting individual fluorescent neurons from the cultures, and measuring their transcriptome using RNA-seq.

Detection of True IgE-expressing Mouse B Lineage Cells

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Cited by 3 •

2014

In vitro analysis of class switch recombination in mice is challenging due to cytophilic IgE molecules bound to Fc receptors on the surface of B cells. We describe a method for IgE detection using trypsin-mediated cleavage of surface-bound IgE prior to fixation and permeabilization for cytoplasmic fluorescence staining.

Detection of Target Enzyme Expression in Genetically Modified Bacterial Cells

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2025

Source: Kim, H. et. al., Multi-enzyme Screening Using a High-throughput Genetic Enzyme Screening System. J. Vis. Exp. (2016)This video demonstrates a genetic screening method to detect enzyme expression using metagenomic fosmid libraries and chromogenic substrates. Flow cytometry identifies and isolates single cells producing colored products, enabling high-throughput selection of active enzyme-expressing cells.

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