Protein Ligand Interaction

Protein-ligand interaction is the selective association between a protein and a small molecule, ion, peptide, or other ligand, a process central to biological regulation and molecular recognition. Binding occurs when complementary shape, charge, hydrophobicity, and hydrogen-bonding patterns stabilize a ligand within or near a protein’s binding site; the interaction can also alter protein conformation and activity. Measuring binding affinity, kinetics, and structural changes helps researchers characterize enzyme regulation, receptor signaling, and metabolic pathways. In biology and drug discovery, these analyses support target validation, inhibitor design, biomarker development, and prediction of how mutations or chemical modifications may affect protein function.

Protein Ligand Interaction - Related Videos

Research

JoVE Journal - Chemistry

Bio-layer Interferometry for Measuring Kinetics of Protein-protein Interactions and Allosteric Ligand Effects

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Cited by 117 •

2014

The protocols here describe kinetic assays of protein-protein interactions with Bio-layer Interferometry. F-type ATP synthase, which is involved in cellular energy metabolism, can be inhibited by its ε subunit in bacteria. We have adapted Bio-layer Interferometry to study interactions of the catalytic complex with ε’s inhibitory C-terminal domain.

Quantitative In-Cell Hydrogen NMR Spectroscopy to Monitor Protein-Ligand Interactions

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2025

In this video, we demonstrate the in-cell nuclear magnetic resonance spectroscopy technique to study protein-ligand interactions between unlabeled overexpressed proteins and small molecules. The successful ligand-protein interaction is confirmed visually by the appearance of an additional set of peaks in the spectral region of interest that gradually replaces the original peaks.

Mobility Shift Affinity Capillary Electrophoresis: A Method to Analyze Sample-Ligand Interactions Depending on Differential Migration of Protein-Ligand Complexes

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2025

This video describes the method to analyze protein-ligand interaction by mobility-shift affinity capillary electrophoresis. This method can be used for characterizing the binding behavior of a protein with various charged ligands.

Biolayer Interferometry Technology to Detect Interactions between Ligand and Analyte

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2025

In this video, we demonstrate biolayer interferometry (BLI) technology to detect the intermolecular interactions between ligands and target analytes in real-time. BLI measures changes in the interference pattern of white light reflected off a layer of immobilized ligands on a biosensor surface as they interact with analytes in solution.

Proteomics to Identify Proteins Interacting with P2X2 Ligand-Gated Cation Channels

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Cited by 13 •

2009

We describe a simple protocol to identify brain proteins that bind to the full length C terminus of ATP-gated P2X2 receptors. The extension and systematic application of this approach to all P2X receptors is expected to lead to a better understanding of P2X receptor signaling.

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