Optical control of protein function provides excellent spatial-temporal resolution for studying proteins in situ. Although light-sensitive exogenous proteins and ligands have been used to manipulate neuronal activity, a method for optical control of neuronal proteins using unnatural amino acids (Uaa) in vivo is lacking. Here, we describe the genetic incorporation of a photoreactive Uaa into the pore of an inwardly rectifying potassium channel Kir2.1. The Uaa occluded the pore, rendering the channel nonconducting, and, on brief light illumination, was released to permit outward K(+) current. Expression of this photoinducible inwardly rectifying potassium (PIRK) channel in rat hippocampal neurons created a light-activatable PIRK switch for su...
<div><p>Manipulation of neuronal activity through genetically targeted actuator molecules is a power...
SummaryChannelrhodopsin-2 (ChR2) is a light-gated, cation-selective ion channel isolated from the gr...
Transmembrane receptors allow a cell to communicate with its environment in response to a variety of...
SummaryOptical control of protein function provides excellent spatial-temporal resolution for studyi...
Photostimulation is a noninvasive way to control biological events with excellent spatial and tempor...
Deciphering neuronal networks governing specific brain functions is a longstanding mission in neuros...
Unnatural amino acid (Uaa) technology has broken new ground in the protein research and introduced a...
International audienceOptogenetic tools were originally designed to target specific neurons for remo...
G-protein coupled inwardly rectifying potassium (GIRK) channels are expressed throughout the human b...
Manipulating the function of neurons and circuits that translate electrical and chemical signals int...
G-protein coupled inwardly rectifying potassium channels (GIRKs) are ubiquitously expressed througho...
International audienceIon channels are transmembrane proteins that control the movement of ions acro...
With a new technology called optogenetics, it is possible to turn neuronal activity on and off in di...
The ability to optically manipulate specific neuronal signaling proteins with genetic precision pave...
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...
SummaryChannelrhodopsin-2 (ChR2) is a light-gated, cation-selective ion channel isolated from the gr...
Transmembrane receptors allow a cell to communicate with its environment in response to a variety of...
SummaryOptical control of protein function provides excellent spatial-temporal resolution for studyi...
Photostimulation is a noninvasive way to control biological events with excellent spatial and tempor...
Deciphering neuronal networks governing specific brain functions is a longstanding mission in neuros...
Unnatural amino acid (Uaa) technology has broken new ground in the protein research and introduced a...
International audienceOptogenetic tools were originally designed to target specific neurons for remo...
G-protein coupled inwardly rectifying potassium (GIRK) channels are expressed throughout the human b...
Manipulating the function of neurons and circuits that translate electrical and chemical signals int...
G-protein coupled inwardly rectifying potassium channels (GIRKs) are ubiquitously expressed througho...
International audienceIon channels are transmembrane proteins that control the movement of ions acro...
With a new technology called optogenetics, it is possible to turn neuronal activity on and off in di...
The ability to optically manipulate specific neuronal signaling proteins with genetic precision pave...
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...
SummaryChannelrhodopsin-2 (ChR2) is a light-gated, cation-selective ion channel isolated from the gr...
Transmembrane receptors allow a cell to communicate with its environment in response to a variety of...