Ion channels are of universal importance for all cell types and play key roles in cellular physiology and pathology. Increased insight into their functional mechanisms is crucial to enable drug design on this important class of membrane proteins, and to enhance our understanding of some of the fundamental features of cells. This review presents the concepts behind the recently developed simulation protocol CompEL, which facilitates the atomistic simulation of ion channels in action. In addition, the review provides guidelines for its application in conjunction with the molecular dynamics software package GROMACS. We first lay out the rationale for designing CompEL as a method that models the driving force for ion permeation through channels...
AbstractPresently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics...
AbstractGenerations of scientists have been captivated by ion channels and how they control the work...
Biological ion channels are essential to life in all its forms. The key properties underlying their ...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
AbstractGenerations of scientists have been captivated by ion channels and how they control the work...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Ion channels are fundamental biological devices that act as gates in order to ensure selective ion t...
Ion channels are membrane proteins that regulate the flow of ions across the cell membrane. These ch...
Ion channels are fundamental biological devices that act as gates in order to ensure selective ion t...
AbstractPresently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics...
AbstractGenerations of scientists have been captivated by ion channels and how they control the work...
Biological ion channels are essential to life in all its forms. The key properties underlying their ...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
AbstractGenerations of scientists have been captivated by ion channels and how they control the work...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Ion channels are fundamental biological devices that act as gates in order to ensure selective ion t...
Ion channels are membrane proteins that regulate the flow of ions across the cell membrane. These ch...
Ion channels are fundamental biological devices that act as gates in order to ensure selective ion t...
AbstractPresently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics...
AbstractGenerations of scientists have been captivated by ion channels and how they control the work...
Biological ion channels are essential to life in all its forms. The key properties underlying their ...