Related Experiment Video
Updated: Jul 22, 2026

Measuring the Induced Membrane Voltage with Di-8-ANEPPS
Published on: November 20, 2009
Evidence of electroconformational changes in membrane proteins: field-induced reductions in intra membrane nonlinear
1Cellular and Molecular Biophysics, Department of Physics, University of South Florida, 4202 E. Fowler Avenue, PHY 114 Tampa, FL 33620, USA. wchen@chumal.cas.usf.edu
Abstract:
Experimental results are presented to show that a pulsed, intensive membrane potential can reduce intra membrane, nonlinear charge movement currents, which are the voltage-sensors in the voltage-dependent membrane proteins and in the excitation-contraction coupling of skeletal muscle fibers. The results indicate a possible mechanism involved in electrical injury: dysfunctions of the voltage-dependent membrane proteins caused by electroconformational damages in their voltage-sensors.
Related Concept Videos
Protein Diffusion in the Membrane
Mechanisms of Membrane-bending
Membrane bending can happen due to intrinsic changes in lipid composition or extrinsic association with different proteins. The proteins involved...
Induced Electric Dipoles
Since the absolute value of potential energy holds no physical meaning, its zero value can be chosen as per...
Induced Electric Fields: Applications
Electrochemical Gradient and Channel Proteins: An Overview
The electrical gradient: The electrical gradient across cell membranes refers to the difference in electric charge between the inside and outside of a cell. This difference drives the movement of ions towards or away from the cells. For instance, if the inside of the cell is more negatively charged relative to the...
Electrochemical Systems

