Light-dependent dimerization is the basis for recently developed noninvasive optogenetic tools. Here we present a novel tool combining optogenetics with the control of protein kinase activity to investigate signal transduction pathways. Mediated by <i>Arabidopsis thaliana</i> photoreceptor cryptochrome 2, we activated the protein kinase C-RAF by blue light-dependent dimerization, allowing for decoupling from upstream signaling events induced by surface receptors. The activation by light is fast, reversible, and not only time but also dose dependent as monitored by phosphorylation of ERK1/2. Additionally, light-activated C-RAF controls serum response factor-mediated gene expression. Light-induced heterodimerization of C-RAF with a kinase-dea...
Optogenetic tools are genetically expressed signaling pathways that transduce extracellular light si...
Cellular signaling is highly compartmentalized in both time and space as exemplified by the cyclic a...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...
Highlights - Optogenetics controls cyclic nucleotide signaling with spatio-temporal resolution. - Ge...
Nature uses precise spatio-temporal control to maintain proper cellular function. Being able to repl...
Receptor tyrosine kinases (RTKs) are a large family of cell surface receptors that sense growth fact...
Receptor tyrosine kinases (RTKs) are a family of cell-surface receptors that have a key role in regu...
Plant cryptochromes undergo blue light-dependent phosphorylation to regulate their activity and abun...
Transmembrane receptors are the predominant conduit through which cells sense and transduce extracel...
Plants have evolved highly sensitive sensory photoreceptor systems to regulate various aspects of th...
Dynamic regulation of cell signaling can drive cellular decisions, whereby a cell can choose diverge...
Optogenetics and photopharmacology enable the spatio-temporal control of cell and animal behavior by...
We report a general strategy for creating protein kinases in mammalian cells that are poised for ver...
Optogenetics is the genetic approach for controlling cellular processes with light. It provides spat...
SummaryThe complex, interconnected architecture of cell-signaling networks makes it challenging to d...
Optogenetic tools are genetically expressed signaling pathways that transduce extracellular light si...
Cellular signaling is highly compartmentalized in both time and space as exemplified by the cyclic a...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...
Highlights - Optogenetics controls cyclic nucleotide signaling with spatio-temporal resolution. - Ge...
Nature uses precise spatio-temporal control to maintain proper cellular function. Being able to repl...
Receptor tyrosine kinases (RTKs) are a large family of cell surface receptors that sense growth fact...
Receptor tyrosine kinases (RTKs) are a family of cell-surface receptors that have a key role in regu...
Plant cryptochromes undergo blue light-dependent phosphorylation to regulate their activity and abun...
Transmembrane receptors are the predominant conduit through which cells sense and transduce extracel...
Plants have evolved highly sensitive sensory photoreceptor systems to regulate various aspects of th...
Dynamic regulation of cell signaling can drive cellular decisions, whereby a cell can choose diverge...
Optogenetics and photopharmacology enable the spatio-temporal control of cell and animal behavior by...
We report a general strategy for creating protein kinases in mammalian cells that are poised for ver...
Optogenetics is the genetic approach for controlling cellular processes with light. It provides spat...
SummaryThe complex, interconnected architecture of cell-signaling networks makes it challenging to d...
Optogenetic tools are genetically expressed signaling pathways that transduce extracellular light si...
Cellular signaling is highly compartmentalized in both time and space as exemplified by the cyclic a...
The light-based control of ion channels has been transformative for the neurosciences, but the optog...