Abstract Conformational changes in ion channels lead to gating of an ion-conductive pore. Ion flux has been measured with high temporal resolution by single-channel electrophysiology for decades. However, correlation between functional and conformational dynamics remained difficult, lacking experimental techniques to monitor sub-millisecond conformational changes. Here, we use the outer membrane protein G (OmpG) as a model system where loop-6 opens and closes the β-barrel pore like a lid in a pH-dependent manner. Functionally, single-channel electrophysiology shows that while closed states are favored at acidic pH and open states are favored at physiological pH, both states coexist and rapidly interchange in all conditions. Using HS-AFM hei...
AbstractIon channels are gated, i.e. they can switch conformation between a closed and an open state...
Proteins are structurally dynamic macromolecules, and it is challenging to quantify the conformation...
Ion channels are membrane proteins whose functions are governed by conformational changes. The wides...
International audienceAbstract Conformational changes in ion channels lead to gating of an ion-condu...
High-speed atomic force microscopy height spectroscopy and single channel electrophysiology recordin...
The physical interactions that switch the functional state of membrane proteins are poorly understoo...
Voltage-gated ion channels are key players of electrical signaling in cells. As a unique subfamily, ...
Ion channels are gated, i.e. they can switch conformation between a closed and an open state. Molecu...
Ion channels are gated, i.e. they can switch conformation between a closed and an open state. Molecu...
Ion channels are gated, i.e. they can switch conformation between a closed and an open state. Molecu...
Comment in Direct visualization of ion-channel gating in a native environment. [Proc Natl Acad Sc...
Comment in Direct visualization of ion-channel gating in a native environment. [Proc Natl Acad Sc...
Comment in Direct visualization of ion-channel gating in a native environment. [Proc Natl Acad Sc...
Comment in Direct visualization of ion-channel gating in a native environment. [Proc Natl Acad Sc...
AbstractIon channels are the “building blocks” of the excitation process in excitable tissues. Despi...
AbstractIon channels are gated, i.e. they can switch conformation between a closed and an open state...
Proteins are structurally dynamic macromolecules, and it is challenging to quantify the conformation...
Ion channels are membrane proteins whose functions are governed by conformational changes. The wides...
International audienceAbstract Conformational changes in ion channels lead to gating of an ion-condu...
High-speed atomic force microscopy height spectroscopy and single channel electrophysiology recordin...
The physical interactions that switch the functional state of membrane proteins are poorly understoo...
Voltage-gated ion channels are key players of electrical signaling in cells. As a unique subfamily, ...
Ion channels are gated, i.e. they can switch conformation between a closed and an open state. Molecu...
Ion channels are gated, i.e. they can switch conformation between a closed and an open state. Molecu...
Ion channels are gated, i.e. they can switch conformation between a closed and an open state. Molecu...
Comment in Direct visualization of ion-channel gating in a native environment. [Proc Natl Acad Sc...
Comment in Direct visualization of ion-channel gating in a native environment. [Proc Natl Acad Sc...
Comment in Direct visualization of ion-channel gating in a native environment. [Proc Natl Acad Sc...
Comment in Direct visualization of ion-channel gating in a native environment. [Proc Natl Acad Sc...
AbstractIon channels are the “building blocks” of the excitation process in excitable tissues. Despi...
AbstractIon channels are gated, i.e. they can switch conformation between a closed and an open state...
Proteins are structurally dynamic macromolecules, and it is challenging to quantify the conformation...
Ion channels are membrane proteins whose functions are governed by conformational changes. The wides...