AbstractThe calcium sensor protein caldendrin is abundantly expressed in neurons and is thought to play an important role in different aspects of synapto-dendritic Ca2+ signaling. Caldendrin is highly abundant in the postsynaptic density of a subset of excitatory synapses in brain and its distinct localization raises several decisive questions about its function. Previous work suggests that caldendrin is tightly associated with Ca2+- and Ca2+ release channels and might be involved in different aspects of the organization of the postsynaptic scaffold as well as with synapse-to-nucleus communication. In this report we introduce two new EF-hand calcium sensor proteins termed calneurons that apart from calmodulin represent the closest homologue...
AbstractChanges in intracellular free Ca2+ concentration ([Ca2+]i) affect many different aspects of ...
NMDA (N-methyl-D-aspartate) receptors and calcium can exert multiple and very divergent effects with...
Abstract Calcium signalling plays a crucial role in the control of neuronal function and plasticity....
The calcium sensor protein caldendrin is abundantly expressed in neurons and is thought to play an i...
AbstractThe calcium sensor protein caldendrin is abundantly expressed in neurons and is thought to p...
The calmodulin (CaM)-like Ca2+-sensor proteins caldendrin, calneuron-1 and -2 are members of the neu...
Ca2+ signaling in neurons is characterized by highly restricted and dynamic gradients called Ca2+ wa...
Caldendrin, L- and S-CaBP1 are CaM-like Ca2+-sensors with different N-termini that arise from altern...
<div><p>Caldendrin, L- and S-CaBP1 are CaM-like Ca<sup>2+</sup>-sensors with different N-termini tha...
Many neurons of the vertebrate central nervous system (CNS) express the Ca2+ binding protein calbind...
NMDA (N-methyl-D-aspartate) receptors and calcium can exert multiple and very divergent effects with...
Dendritic spines act as micro-compartments of Ca2+ regulation. In a recent study, it was suggested t...
Modulation of G protein-coupled receptor (GPCR) signaling by local changes in intracellular calcium ...
Excitatory synapses of principal hippocampal neurons are frequently located on dendritic spines. The...
The cytoplasmic free Ca2+ concentration ([Ca2+]i) is a key determinant of neuronal information trans...
AbstractChanges in intracellular free Ca2+ concentration ([Ca2+]i) affect many different aspects of ...
NMDA (N-methyl-D-aspartate) receptors and calcium can exert multiple and very divergent effects with...
Abstract Calcium signalling plays a crucial role in the control of neuronal function and plasticity....
The calcium sensor protein caldendrin is abundantly expressed in neurons and is thought to play an i...
AbstractThe calcium sensor protein caldendrin is abundantly expressed in neurons and is thought to p...
The calmodulin (CaM)-like Ca2+-sensor proteins caldendrin, calneuron-1 and -2 are members of the neu...
Ca2+ signaling in neurons is characterized by highly restricted and dynamic gradients called Ca2+ wa...
Caldendrin, L- and S-CaBP1 are CaM-like Ca2+-sensors with different N-termini that arise from altern...
<div><p>Caldendrin, L- and S-CaBP1 are CaM-like Ca<sup>2+</sup>-sensors with different N-termini tha...
Many neurons of the vertebrate central nervous system (CNS) express the Ca2+ binding protein calbind...
NMDA (N-methyl-D-aspartate) receptors and calcium can exert multiple and very divergent effects with...
Dendritic spines act as micro-compartments of Ca2+ regulation. In a recent study, it was suggested t...
Modulation of G protein-coupled receptor (GPCR) signaling by local changes in intracellular calcium ...
Excitatory synapses of principal hippocampal neurons are frequently located on dendritic spines. The...
The cytoplasmic free Ca2+ concentration ([Ca2+]i) is a key determinant of neuronal information trans...
AbstractChanges in intracellular free Ca2+ concentration ([Ca2+]i) affect many different aspects of ...
NMDA (N-methyl-D-aspartate) receptors and calcium can exert multiple and very divergent effects with...
Abstract Calcium signalling plays a crucial role in the control of neuronal function and plasticity....