Isoelectric Point

The isoelectric point (pI) is the pH at which an amino acid, protein, or other amphoteric molecule carries no net electrical charge, making it a key concept in chemistry and biochemistry. As pH changes, ionizable groups gain or lose protons according to their pKa values; at the pI, positive and negative charges balance even though charged groups remain present. Near this point, electrostatic repulsion decreases, often reducing solubility and promoting aggregation or precipitation. Measuring and controlling the isoelectric point supports protein separation by electrophoresis, purification, formulation, and the study of molecular charge and stability.

Isoelectric Point - Related Videos

Research

JoVE Journal - Neuroscience

Induction of an Isoelectric Brain State to Investigate the Impact of Endogenous Synaptic Activity on Neuronal Excitability In Vivo

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Cited by 3 •

2016

This procedure performs long-lasting in vivo intracellular recordings from single neurons during physiologically relevant cerebral states and after complete abolition of ongoing electrical activities, resulting in an isoelectric brain state. The physiological constants of the animal are carefully monitored during the transition to the artificial comatose condition.

Liquid Phase Isoelectric Focusing: An Electrophoresis Technique to Separate Bioactive Molecules from Crude Gymnema sylvestre Extract

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2025

This video describes a technique to separate complex molecules from plant extracts using liquid phase isoelectric focusing. This technique helps purify complex biomolecules in their native state which can be used for various downstream applications.

Highly Sensitive and Quantitative Detection of Proteins and Their Isoforms by Capillary Isoelectric Focusing Method

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2018

Capillary isoelectric focusing is an antibody-based, ultrasensitive, high throughput technique, enabling detailed characterization of proteins and their isoforms from extremely small biological samples. The following describes a protocol for detection and quantification of specific proteins and their isoforms in an automated and robotized manner.

Separation of Bioactive Small Molecules, Peptides from Natural Sources and Proteins from Microbes by Preparative Isoelectric Focusing (IEF) Method

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Cited by 4 •

2020

The objective is to fractionate and isolate bioactive small molecules, peptides from a complex plant extract, and proteins from pathogenic microbes by employing liquid-phase isoelectric focusing (IEF) method. Further, the separated molecules were identified and their bioactivity confirmed.

Synthesis of Masarimycin, a Small Molecule Inhibitor of Gram-Positive Bacterial Growth

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2022

A detailed protocol is presented for preparing the bacteriostatic diamide masarimycin, a small molecule probe that inhibits the growth of Bacillus subtilis and Streptococcus pneumoniae by targeting cell wall degradation. Its application as a chemical probe is demonstrated in synergy/antagonism assays and morphological studies with B. subtilis and S. pneumoniae.

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