In Gel Activity Assays

In-gel activity assays are biochemical techniques that detect enzyme function within a gel after electrophoretic separation, linking catalytic activity to the molecular size of the active protein. Typically, proteins are separated under conditions that preserve or permit recovery of activity, while a substrate is incorporated into the gel or applied during incubation; enzymatic turnover then produces a colored, fluorescent, or cleared band. These assays help distinguish active enzymes from inactive proteins, estimate apparent molecular weight, and compare activity among samples. In biology, they support studies of enzyme expression, isoforms, post-translational regulation, and responses to genetic or environmental changes.

In Gel Activity Assays - Related Videos

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JoVE EoE - Assay Techniques

Phospholipase Activity Assay: A Gel Diffusion Assay to Determine Phospholipase Activity in Crude Venom Extract from Anthopleura dowii

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2025

In this video, we demonstrate an assay to establish the presence of phospholipase in the crude venom extract from Anthopleura dowii—a marine sea anemone. The assay utilizes an agarose gel diffusion technique, in which the enzyme phospholipase diffuses and breaks down phospholipids incorporated in the solid media in a radial manner.

DNA Polymerase Activity Assay Using Near-infrared Fluorescent Labeled DNA Visualized by Acrylamide Gel Electrophoresis

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Cited by 2 •

2017

This protocol describes the characterization of DNA polymerase synthesis of modified DNA through observation of changes to near-infrared fluorescently labeled DNA using gel electrophoresis and gel imaging. Acrylamide gels are used for high resolution imaging of the separation of short nucleic acids, which migrate at different rates depending on size.

Optimized Fibrin Gel Bead Assay for the Study of Angiogenesis

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Cited by 165 •

2007

This video demonstrates the protocol of an in vitro angiogenesis assay that recapitulates several stages of angiogenesis. Time-lapse images of sprouting, lumen formation, branching and anastomosis - key features of angiogenesis - are shown.

Polyacrylamide Gels for Invadopodia and Traction Force Assays on Cancer Cells

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Cited by 9 •

2015

Mechanical rigidity in the tumor microenvironment plays a crucial role in driving malignant behavior by increasing invadopodia activity and actomyosin contractility. Using polyacrylamide gels (PAAs), invadopodia and traction force assays can be utilized to study the invasive and contractile properties of cancer cells in response to matrix rigidity.

Research

JoVE Journal - Biology
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Assaying the Kinase Activity of LRRK2 in vitro

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Cited by 3 •

2012

Leucine Rich Repeat Kinase 2 is a large multidomain kinase, mutations in which are the most common genetic cause of Parkinson's disease. Analysis of the kinase activity of this protein has proven to be a crucial tool in understanding the biology and dysfunction of this protein. In this paper, in vitro assaying of the kinase activity of LRRK2 and a selection of its mutants is described, providing an experimental system to examine phosphorylation of putative substrates and potential dysfunction...

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