The permeation of ions and other molecules across biological membranes is an inherent requirement of all cellular organisms. Ion channels, in particular, are responsible for the conduction of charged species, hence modulating the propagation of electrical signals. Despite the universal physiological implications of this property, the molecular functioning of ion channels remains ambiguous. The combination of atomistic structural data with computational methodologies, such as molecular dynamics (MD) simulations, is now considered routine to investigate structure–function relationships in biological systems. A fuller understanding of conduction, selectivity, and gating, therefore, is steadily emerging due to the applicability of these techniq...
Generations of scientists have been captivated by ion channels and how they control the workings of ...
Voltage-gated ion channels are the target of a range of naturally occurring toxins and therapeutic d...
Voltage-gated sodium channels are the molecular components of electrical signaling in the body, yet ...
The permeation of ions and other molecules across biological membranes is an inherent requirement of...
The permeation of ions and other molecules across biological membranes is an inherent requirement of...
Membrane ion channels are the fundamental electrical components in the nervous system. Recent develo...
Voltage-gated sodium channels are responsible for the initiation and propagation of electrical signa...
The crystal structure of NavAb, a bacterial voltage gated Na<sup>+</sup> channel, exhibits a selecti...
The determination of the atomic structures of voltage-gated bacterial sodium channels using X-ray cr...
Generations of scientists have been captivated by ion channels and how they control the workings of ...
Ion channels are membrane proteins that regulate the flow of ions across the cell membrane. These ch...
: The recent determination of cryo-EM structures of voltage-gated sodium (Nav) channels has revealed...
AbstractGenerations of scientists have been captivated by ion channels and how they control the work...
Generations of scientists have been captivated by ion channels and how they control the workings of ...
Generations of scientists have been captivated by ion channels and how they control the workings of ...
Generations of scientists have been captivated by ion channels and how they control the workings of ...
Voltage-gated ion channels are the target of a range of naturally occurring toxins and therapeutic d...
Voltage-gated sodium channels are the molecular components of electrical signaling in the body, yet ...
The permeation of ions and other molecules across biological membranes is an inherent requirement of...
The permeation of ions and other molecules across biological membranes is an inherent requirement of...
Membrane ion channels are the fundamental electrical components in the nervous system. Recent develo...
Voltage-gated sodium channels are responsible for the initiation and propagation of electrical signa...
The crystal structure of NavAb, a bacterial voltage gated Na<sup>+</sup> channel, exhibits a selecti...
The determination of the atomic structures of voltage-gated bacterial sodium channels using X-ray cr...
Generations of scientists have been captivated by ion channels and how they control the workings of ...
Ion channels are membrane proteins that regulate the flow of ions across the cell membrane. These ch...
: The recent determination of cryo-EM structures of voltage-gated sodium (Nav) channels has revealed...
AbstractGenerations of scientists have been captivated by ion channels and how they control the work...
Generations of scientists have been captivated by ion channels and how they control the workings of ...
Generations of scientists have been captivated by ion channels and how they control the workings of ...
Generations of scientists have been captivated by ion channels and how they control the workings of ...
Voltage-gated ion channels are the target of a range of naturally occurring toxins and therapeutic d...
Voltage-gated sodium channels are the molecular components of electrical signaling in the body, yet ...