AbstractPresently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calculations, indirect interpretation of energy maps, or application of external electric fields. We present a computational method to directly simulate ion flux through membrane channels based on biologically realistic electrochemical gradients. In close analogy to single-channel electrophysiology, physiologically and experimentally relevant timescales are achieved. We apply our method to the bacterial channel PorB from pathogenic Neisseria meningitidis, which, during Neisserial infection, inserts into the mitochondrial membrane of target cells and elicits apoptosis by dissipating the membrane potential. We show that our method accurately p...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
AbstractPresently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
AbstractPresently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Presently, most simulations of ion channel function rely upon nonatomistic Brownian dynamics calcula...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...
AbstractBrownian dynamics simulations have been carried out to study ionic currents flowing across a...
Ion channels are of universal importance for all cell types and play key roles in cellular physiolog...