Post Translational Modification

Post-translational modification (PTM) is the chemical alteration of a protein after ribosomal synthesis, enabling cells to regulate protein structure, activity, localization, and lifetime. Enzymes add or remove functional groups or molecular units, such as phosphate, acetyl, methyl, or ubiquitin, through covalent reactions that respond to cellular signals and conditions. These modifications can change charge, conformation, binding interactions, and degradation pathways, creating diverse protein functions from a single gene sequence. In chemistry and biochemistry, studying PTMs helps explain signaling networks, gene regulation, metabolism, and disease mechanisms, while analytical methods such as mass spectrometry identify modification sites and support biomarker discovery and therapeutic development.

Post Translational Modification - Related Videos

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JoVE Journal - Biology
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Identification of Post-translational Modifications of Plant Protein Complexes

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Cited by 8 •

2014

We describe here a protocol for the purification and characterization of plant protein complexes. We demonstrate that by immunoprecipitating a single protein within a complex, so we can identify its post-translational modifications and its interacting partners.

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JoVE Journal - Biology
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Detection of Post-translational Modifications on Native Intact Nucleosomes by ELISA

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Cited by 8 •

2011

Nucleosome ELISA (NU-ELISA) is a sensitive and quantitative method to detect global patterns of post-translational modifications in preparations of native, intact nucleosomes. These modifications include methylations, acetylations, and phosphorylations at specific histone amino acid residues, and hence NU-ELISA provides a global proteomic assay of the overall chromatin modification states of specific cell types.

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JoVE Journal - Biology
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Exploring Caspase Mutations and Post-Translational Modification by Molecular Modeling Approaches

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Cited by 1 •

2022

The present protocol uses a biomolecular simulation package and describes the molecular dynamics (MD) approach for modeling the wild-type caspase and its mutant forms. The MD method allows for assessing the dynamic evolution of the caspase structure and the potential effect of mutations or post-translational modifications.

Research

JoVE Journal - Biology

Budding Yeast Protein Extraction and Purification for the Study of Function, Interactions, and Post-translational Modifications

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Cited by 22 •

2013

The preparation of high quality yeast cell extracts is a necessary first step in the analysis of individual proteins or entire proteomes. Here we describe a fast, efficient, and reliable homogenization protocol for budding yeast cells that has been optimized to preserve protein functions, interactions, and post-translational modifications.

Isolation of Intermediate Filament Proteins from Multiple Mouse Tissues to Study Aging-associated Post-translational Modifications

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Cited by 5 •

2017

In this method, we present biochemical procedures for rapid and efficient isolation of intermediate filament (IF) proteins from multiple mouse tissues. Isolated IFs can be used to study changes in post-translational modifications by mass spectrometry and other biochemical assays.

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