Peptide Substrate Analysis

Peptide substrate analysis is the study of how enzymes recognize, bind, and chemically modify short amino acid sequences, providing a way to define enzyme specificity and catalytic activity in biochemistry. In a typical analysis, a peptide substrate is incubated with an enzyme under controlled conditions, and substrate consumption or product formation is measured to determine reaction rates, cleavage sites, and sequence preferences. These data can reveal substrate-binding determinants, distinguish related proteases or other peptide-modifying enzymes, and support kinetic modeling. The approach is used to characterize signaling pathways, investigate disease-associated enzyme activity, and guide the design of selective inhibitors or diagnostic assays.

Peptide Substrate Analysis - Related Videos

Research

JoVE Journal - Biochemistry

Analysis of Histone Antibody Specificity with Peptide Microarrays

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Cited by 22 •

2017

This manuscript describes methods for applying peptide microarray technology to specificity profiling of antibodies that recognize histones and their post-translational modifications.

Identification of Modified Histones as Binding Substrates of Human Spindlin Family Member 4 (SPIN4) by Peptide Arrays and Native Nucleosome Pulldown

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2026

Genetic variants in human Spindlin Family Member 4 (SPIN4) have recently been identified in patients with bone overgrowth, a novel developmental disorder. A protocol and new results describing the biochemical identification of modified histones in the context of nucleosomes as SPIN4 binding substrates are presented.

Fluorescent Peptide Zymography: A Modified Technique to Detect Protease Activity Using Fluorogenic Substrates in Zymogram Gels

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2025

In this video, we perform zymography, an electrophoretic technique, to analyze the proteolytic activity within biological samples.

Immunoaffinity Based Extraction of Ubiquitinylated Peptides: A Technique to Selectively Extract Ubiquitin Tagged Peptides from Purified Peptide Fractions

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2023

This video describes a method to extract and purify ubiquitinylated peptides containing remnant di-glycine peptides from a complex peptide mixture. The presented method may help in identifying original ubiquitination sites in the protein.

A High Throughput MHC II Binding Assay for Quantitative Analysis of Peptide Epitopes

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Cited by 21 •

2014

Biochemical assays with recombinant human MHC II molecules can provide rapid, quantitative insights into immunogenic epitope identification, deletion, or design. Here, a peptide-MHC II binding assay scaled to 384-well plates is described. This cost effective format should prove useful in the fields of protein deimmunization and vaccine design and development.

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