Protein Gel Shift

Protein gel shift is a biochemical method that detects interactions or conformational changes by comparing the migration of a protein with that of its bound or modified form during gel electrophoresis. Under non-denaturing conditions, protein complexes move through a polyacrylamide matrix at different rates because binding changes their size, charge, or shape, producing a measurable mobility shift. Researchers use this approach to examine protein–protein, protein–DNA, and protein–RNA interactions, estimate complex formation, and assess binding specificity. In biochemistry, protein gel shifts provide a relatively direct way to connect molecular binding events with observable changes in electrophoretic behavior.

Protein Gel Shift - Related Videos

Research

JoVE Journal - Biology
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Staining Proteins in Gels

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Cited by 7 •

2008

Following separation by electrophoretic methods, proteins in a gel can be detected by several staining methods. Staining of proteins with Coomassie Blue, Silver Staining, SYPRO Orange, SYPRO Ruby are demonstrated in this video.

Research

JoVE Journal - Biology

Staining of Proteins in Gels with Coomassie G-250 without Organic Solvent and Acetic Acid

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Cited by 94 •

2009

A short protocol for protein staining with Coomassie Brilliant Blue (CBB) G-250 in polyacrylamide gels is described without using organic solvents or acetic acid as in the classical staining procedures with CBB.

Acyl-PEGyl Exchange Gel Shift Assay for Quantitative Determination of Palmitoylation of Brain Membrane Proteins

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Cited by 7 •

2020

Palmitoylation entails the incorporation of a 16-carbon palmitate moiety to cysteine residues of target proteins in a reversible manner. Here, we describe a biochemical approach, the acyl-PEGyl exchange gel shift (APEGS) assay, to investigate the palmitoylation state of any protein of interest in mouse brain lysates.

Horizontal Gel Electrophoresis for Enhanced Detection of Protein-RNA Complexes

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Cited by 6 •

2017

Native polyacrylamide gel electrophoresis is a fundamental tool for analyzing RNA-protein interactions. Traditionally most experiments have used vertical gels. However, horizontal gels provide several advantages, such as the opportunity to monitor complexes during electrophoresis. We provide a detailed protocol for generating and using horizontal native gel electrophoresis.

Pouring and Running a Protein Gel by reusing Commercial Cassettes

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Cited by 2 •

2012

Our protocol demonstrates how to pour multiple protein gels at a time by recycling Invitrogen Nupage Novex minigel cassettes, and inexpensive materials purchased at a home improvement store. This economical and streamlined method includes a way to store the gels at 4°C for a few weeks. By re-using the plastic gel cassettes from commercially available gels, labs that run frequent protein gels can save significant costs and help the environment.

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