Fluorescent Protein

Fluorescent proteins are genetically encoded proteins that emit visible light after absorbing light of a specific wavelength, making them valuable tools for observing biological processes. Their fluorescence arises when the protein folds around a chromophore, whose chemical structure forms within the protein and undergoes excitation followed by emission at a longer wavelength. By attaching fluorescent protein genes to promoters or fusing them with proteins of interest, researchers can track gene expression, protein localization, cell movement, and cellular interactions in living systems. Variants with different colors, brightness, and response properties support microscopy, biosensor development, and quantitative studies of cell biology.

Fluorescent Protein - Related Videos

Research

JoVE Journal - Biology
Free Sample

Green Fluorescent Protein-based Expression Screening of Membrane Proteins in Escherichia coli

0 Views •

Cited by 34 •

2015

A streamlined approach to screening for the expression of recombinant membrane proteins in Escherichia coli based on fusion to green fluorescent protein is presented.

Research

JoVE Journal - Biochemistry
Free Sample

Rapid Assessment of Membrane Protein Quality by Fluorescent Size Exclusion Chromatography

0 Views •

Cited by 2 •

2023

The present protocol describes a procedure to perform fluorescent size exclusion chromatography (FSEC) on membrane proteins to assess their quality for downstream functional and structural analysis. Representative FSEC results collected for several G-protein coupled receptors (GPCRs) under detergent-solubilized and detergent-free conditions are presented.

Research

JoVE EoE - Biomolecular Interaction Detection Techniques

Fluorescence Anisotropy-Based Detection of Protein-Protein Interactions

0 Views •

2025

In this video, we describe the fluorescence anisotropy technique to study the interactions between the fluorophore-tagged Shwachman-diamond syndrome (SBDS) protein and the elongation factor-like 1 GTPase (EFL1). On incubating SBDS proteins with gradually increasing concentrations of EFL1, a steady increase in anisotropy is observed, indicating a successful interaction between the two proteins.

Fluorescence Anisotropy as a Tool to Study Protein-protein Interactions

0 Views •

Cited by 37 •

2016

Protein interactions are at the heart of a cell's function. Calorimetric and spectroscopic techniques are commonly used to characterize them. Here we describe fluorescence anisotropy as a tool to study the interaction between the protein mutated in the Shwachman-Diamond Syndrome (SBDS) and the Elongation factor-like 1 GTPase (EFL1).

Antibody Labeling with Fluorescent Dyes Using Magnetic Protein A and Protein G Beads

0 Views •

Cited by 3 •

2016

The on-bead method for labeling antibodies with small molecules enables labeling of a small amount of antibodies directly from cell media. This method is compatible with amine and thiol chemistry, and can handle multiple samples in parallel, manually or using automated platforms.

View All Results

FAQs

Related Topics