Related Experiment Video
Updated: Jan 20, 2026

Proteomics to Identify Proteins Interacting with P2X2 Ligand-Gated Cation Channels
Published on: May 18, 2009
Computational Approaches for Elucidating Protein-Protein Interactions in Cation Channel Signaling
Baichun Hu1,2, Xiaoming Zheng1,2, Ying Wang1,2,3,4
1Key Laboratory of Structure-Based Drug Design & Discovery of Ministry of Education, Shenyang Pharmaceutical University, Shenyang 110016, China.
Background:
The lipid bilayer of the plasma membrane is impermeable to ions, yet changes in the flux of ions across the cell membrane are critical regulatory events in cells. Because of their regulatory roles in a range of physiological processes, such as electrical signaling in muscles and neurons, to name a few, these proteins are one of the most important drug targets.
Objective:
This review mainly focused on the computational approaches for elucidating proteinprotein interactions in cation channel signaling.
Discussion:
Due to continuously advanced facilities and technologies in computer sciences, the physical contacts of macromolecules of channel structures have been virtually visualized. Indeed, techniques like protein-protein docking, homology modeling, and molecular dynamics simulation are valuable tools for predicting the protein complex and refining channels with unreleased structures. Undoubtedly, these approaches will greatly expand the cation channel signaling research, thereby speeding up structure-based drug design and discovery.
Conclusion:
We introduced a series of valuable computational tools for elucidating protein-protein interactions in cation channel signaling, including molecular graphics, protein-protein docking, homology modeling, and molecular dynamics simulation.
More Related Videos
Related Concept Videos
16:36Proteomics to Identify Proteins Interacting with P2X2 Ligand-Gated Cation Channels
06:50Computational Prediction of Amino Acid Preferences of Potentially Multispecific Peptide-Binding Domains Involved in Protein-Protein Interactions
13:56A Comparative Approach to Characterize the Landscape of Host-Pathogen Protein-Protein Interactions
11:15Imaging Protein-protein Interactions in vivo
06:45Dissecting Multi-protein Signaling Complexes by Bimolecular Complementation Affinity Purification (BiCAP)
14:08Study of Protein-protein Interactions in Autophagy Research

