Transmembrane receptors allow a cell to communicate with its environment in response to a variety of input signals. These can be changes in the concentration of ligands (e.g. hormones or neurotransmitters), temperature, pressure (e.g. acoustic waves or touch), transmembrane potential, or light intensity. Many important receptors have now been characterized in atomic detail and our understanding of their functional properties has markedly increased in recent years. As a consequence, these sophisticated molecular machines can be reprogrammed to respond to unnatural input signals. In this Review, we show how voltage-gated and ligand-gated ion channels can be endowed with synthetic photoswitches, and how the resulting artificial photoreceptors ...
In optogenetics, targeted illumination is used to control the functions of cells expressing exogenou...
Photochemical control of neuronal activity: methods and clinical applicationby Ivan TochitskyDoctor ...
The advent of optogenetics has ushered in a new era in neuroscience where spatiotemporal control of ...
Membrane receptors and ion channels respond to various stimuli and relay that information across the...
International audienceIn neurons, ligand-gated ion channels decode the chemical signal of neurotrans...
International audienceLight-controllable tools provide powerful means to manipulate and interrogate ...
International audienceThe optical neuroscience revolution is transforming how we study neural circui...
The advent of optogenetics and genetically-encoded photosensors has provided neuroscience researcher...
The absorption of light by bound or diffusible chromophores causes conformational rearrangements in ...
International audienceIon channels are transmembrane proteins that control the movement of ions acro...
International audienceAdvances in synthetic chemistry, structural biology, molecular modelling and m...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...
Sensory photoreceptors underpin light-dependent adaptations of organismal physiology, development, a...
Ion channels are transmembrane proteins that control the movement of ions across the cell membrane. ...
<div><p>Manipulation of neuronal activity through genetically targeted actuator molecules is a power...
In optogenetics, targeted illumination is used to control the functions of cells expressing exogenou...
Photochemical control of neuronal activity: methods and clinical applicationby Ivan TochitskyDoctor ...
The advent of optogenetics has ushered in a new era in neuroscience where spatiotemporal control of ...
Membrane receptors and ion channels respond to various stimuli and relay that information across the...
International audienceIn neurons, ligand-gated ion channels decode the chemical signal of neurotrans...
International audienceLight-controllable tools provide powerful means to manipulate and interrogate ...
International audienceThe optical neuroscience revolution is transforming how we study neural circui...
The advent of optogenetics and genetically-encoded photosensors has provided neuroscience researcher...
The absorption of light by bound or diffusible chromophores causes conformational rearrangements in ...
International audienceIon channels are transmembrane proteins that control the movement of ions acro...
International audienceAdvances in synthetic chemistry, structural biology, molecular modelling and m...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...
Sensory photoreceptors underpin light-dependent adaptations of organismal physiology, development, a...
Ion channels are transmembrane proteins that control the movement of ions across the cell membrane. ...
<div><p>Manipulation of neuronal activity through genetically targeted actuator molecules is a power...
In optogenetics, targeted illumination is used to control the functions of cells expressing exogenou...
Photochemical control of neuronal activity: methods and clinical applicationby Ivan TochitskyDoctor ...
The advent of optogenetics has ushered in a new era in neuroscience where spatiotemporal control of ...