In the nervous system, many intracellular responses to elevated calcium are mediated by CaM kinases (CaMKs), a family of protein kinases whose activities are initially modulated by binding Ca2+/calmodulin and subsequently by protein phosphorylation. One member of this family, CaMKII, is well-established for its effects on modulating synaptic plasticity and learning and memory. However, recent studies indicate that some actions on neuronal development and function attributed to CaMKII may instead or in addition be mediated by other members of the CaMK cascade, such as CaMKK, CaMKI, and CaMKIV. This review summarizes key neuronal functions of the CaMK cascade in signal transduction, gene transcription, synaptic development and plasticity, and...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...
Intracellular signaling mechanisms translate extracellular signals, such as neuronal activity, into ...
minireview on functions of CaMKK2 and its potential as a target for therapeutic intervention
In the nervous system, many intracellular responses to elevated calcium are mediated by CaM kinases ...
Ca2+/calmodulin-dependent protein kinase kinase (CaMKK) is the activating kinase for multiple downst...
A change in intracellular free calcium is a common signaling mechanism that modulates a wide array o...
Electrical activity plays a crucial role in neuronal circuit assembly. Activation of NMDA receptors ...
Ca2+/calmodulin-dependent protein kinase kinase (CaMKK) is the activating kinase for multiple downst...
Elevated intracellular Ca2+ triggers numerous signaling pathways including protein kinases such as t...
While CaMKII has long been known to be essential for synaptic plasticity and learning, recent work p...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Brain and Cognitive Sciences, 2001....
minireview on functions of CaMKK2 and its potential as a target for therapeutic intervention
Calcium functions as an important signaling mol-ecule in nerve cells by regulating a variety of phys...
Ca2+/calmodulin-dependent kinase II (CaMKII) is an abundant synaptic signalling molecule that is ess...
The alpha calcium calmodulin kinase II (α-CaMKII) is known to play a key role in CA1/CA3 synaptic pl...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...
Intracellular signaling mechanisms translate extracellular signals, such as neuronal activity, into ...
minireview on functions of CaMKK2 and its potential as a target for therapeutic intervention
In the nervous system, many intracellular responses to elevated calcium are mediated by CaM kinases ...
Ca2+/calmodulin-dependent protein kinase kinase (CaMKK) is the activating kinase for multiple downst...
A change in intracellular free calcium is a common signaling mechanism that modulates a wide array o...
Electrical activity plays a crucial role in neuronal circuit assembly. Activation of NMDA receptors ...
Ca2+/calmodulin-dependent protein kinase kinase (CaMKK) is the activating kinase for multiple downst...
Elevated intracellular Ca2+ triggers numerous signaling pathways including protein kinases such as t...
While CaMKII has long been known to be essential for synaptic plasticity and learning, recent work p...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Brain and Cognitive Sciences, 2001....
minireview on functions of CaMKK2 and its potential as a target for therapeutic intervention
Calcium functions as an important signaling mol-ecule in nerve cells by regulating a variety of phys...
Ca2+/calmodulin-dependent kinase II (CaMKII) is an abundant synaptic signalling molecule that is ess...
The alpha calcium calmodulin kinase II (α-CaMKII) is known to play a key role in CA1/CA3 synaptic pl...
AbstractNeurite extension and branching are important neuronal plasticity mechanisms that can lead t...
Intracellular signaling mechanisms translate extracellular signals, such as neuronal activity, into ...
minireview on functions of CaMKK2 and its potential as a target for therapeutic intervention