Abstract Calcium ions (Ca2+) play pivotal roles in regulating diverse brain functions, including cognition, emotion, locomotion, and learning and memory. These functions are intricately regulated by a variety of Ca2+-dependent cellular processes, encompassing synaptic plasticity, neuro/gliotransmitter release, and gene expression. In our previous work, we developed ‘monster OptoSTIM1’ (monSTIM1), an improved OptoSTIM1 that selectively activates Ca2+-release–activated Ca2+ (CRAC) channels in the plasma membrane through blue light, allowing precise control over intracellular Ca2+ signaling and specific brain functions. However, the large size of the coding sequence of monSTIM1 poses a limitation for its widespread use, as it exceeds the packa...
The advent of optogenetic methods has made it possible to use endogeneously produced molecules to im...
The optogenetic tool channelrhodopsin-2 (ChR2) is widely used to excite neurons to study neural circ...
Ca2+ concentration jumps for the activation of Ca2+-dependent ion channels or transporters can be ob...
© 2020, The Author(s).Optogenetic approaches for controlling Ca2+ channels provide powerful means fo...
Calcium (Ca2+) signals that are precisely modulated in space and time mediate a myriad of cellular p...
Voltage-gated Ca(2+) (CaV ) channels mediate Ca(2+) entry into excitable cells to regulate a myriad ...
AbstractAstrocytes modulate synaptic transmission via release of gliotransmitters such as ATP, gluta...
Advancements in genetically based technologies have begun to allow us to better understand the relat...
The advent of optogenetic methods has made it possible to use endogeneously produced molecules to im...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Despite recent advances in optogenetics, it remains challenging to manipulate gene expression in spe...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
In recent years, optogenetic approaches have significantly advanced the experimental repertoire of c...
The advent of optogenetic methods has made it possible to use endogeneously produced molecules to im...
The optogenetic tool channelrhodopsin-2 (ChR2) is widely used to excite neurons to study neural circ...
Ca2+ concentration jumps for the activation of Ca2+-dependent ion channels or transporters can be ob...
© 2020, The Author(s).Optogenetic approaches for controlling Ca2+ channels provide powerful means fo...
Calcium (Ca2+) signals that are precisely modulated in space and time mediate a myriad of cellular p...
Voltage-gated Ca(2+) (CaV ) channels mediate Ca(2+) entry into excitable cells to regulate a myriad ...
AbstractAstrocytes modulate synaptic transmission via release of gliotransmitters such as ATP, gluta...
Advancements in genetically based technologies have begun to allow us to better understand the relat...
The advent of optogenetic methods has made it possible to use endogeneously produced molecules to im...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Despite recent advances in optogenetics, it remains challenging to manipulate gene expression in spe...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
Optogenetic manipulation of cells or living organisms became widely used in neuroscience following t...
In recent years, optogenetic approaches have significantly advanced the experimental repertoire of c...
The advent of optogenetic methods has made it possible to use endogeneously produced molecules to im...
The optogenetic tool channelrhodopsin-2 (ChR2) is widely used to excite neurons to study neural circ...
Ca2+ concentration jumps for the activation of Ca2+-dependent ion channels or transporters can be ob...