The plasma membrane Ca2+-ATPases (PMCA) represent the major high-affinity Ca2+ extrusion system in the brain. PMCAs comprise four isoforms and over 20 splice variants. Their different functional properties may permit different PMCA splice variants to accommodate different kinds of local [Ca2+] transients, but for a specific PMCA to play a unique role in local Ca2+ handling it must be targeted to the appropriate subcellular compartment. We used immunohistochemistry to study the spatial distribution of PMCA2a–one of the two major carboxyl-terminal splice variants of PMCA2–in the adult rat brain, testing whether this isoform, with especially high basal activity, is targeted to specific subcellular compartments. In striking contrast to the wide...
AbstractIn this review the four different genes of the mammalian plasma membrane calcium ATPase (PMC...
Spatial and temporal control of intracellular calcium signaling is essential for neuronal developmen...
Abstract Background Plasma membrane Ca2+-ATPases (PMCAs) are high affinity Ca2+ transporters activel...
The plasma membrane Ca2+-ATPases (PMCA) represent the major high-affinity Ca2+ extrusion system in t...
Regulation of intracellular calcium is crucial both for proper neuronal function and survival. By co...
Plasma membrane calcium ATPase isoforms (PMCAs) are expressed in a wide variety of tissues where cel...
The plasma membrane calcium extrusion mechanism, PMCA (plasma membrane calcium ATPase) isoform 2 is ...
Ca2+ signals regulate most aspects of animal cell life. They are of particular importance to the ner...
Most excitatory input in the hippocampus impinges on dendritic spines. Entry of Ca2+ into spines thr...
The plasma membrane calcium ATP-ase (PMCA) represents a primary system for the specific extrusion of...
The plasma membrane Ca(2+) ATPase (PMCA pump) is a member of the superfamily of P-type pumps. It is ...
The Ca(2+) ATPases of the plasma membrane (PMCA pumps) export Ca(2+) from all eukaryotic cells. In m...
AbstractThe plasma membrane Ca2+-ATPase (PMCA), the enzyme responsible for the maintenance of intrac...
Ca(2+) in neurons is vital to processes such as neurotransmission, neurotoxicity, synaptic developme...
Plasma membrane Ca²+ ATPase (PMCA) pump isoforms 2, 3, and 1CII are expressed in large amounts in t...
AbstractIn this review the four different genes of the mammalian plasma membrane calcium ATPase (PMC...
Spatial and temporal control of intracellular calcium signaling is essential for neuronal developmen...
Abstract Background Plasma membrane Ca2+-ATPases (PMCAs) are high affinity Ca2+ transporters activel...
The plasma membrane Ca2+-ATPases (PMCA) represent the major high-affinity Ca2+ extrusion system in t...
Regulation of intracellular calcium is crucial both for proper neuronal function and survival. By co...
Plasma membrane calcium ATPase isoforms (PMCAs) are expressed in a wide variety of tissues where cel...
The plasma membrane calcium extrusion mechanism, PMCA (plasma membrane calcium ATPase) isoform 2 is ...
Ca2+ signals regulate most aspects of animal cell life. They are of particular importance to the ner...
Most excitatory input in the hippocampus impinges on dendritic spines. Entry of Ca2+ into spines thr...
The plasma membrane calcium ATP-ase (PMCA) represents a primary system for the specific extrusion of...
The plasma membrane Ca(2+) ATPase (PMCA pump) is a member of the superfamily of P-type pumps. It is ...
The Ca(2+) ATPases of the plasma membrane (PMCA pumps) export Ca(2+) from all eukaryotic cells. In m...
AbstractThe plasma membrane Ca2+-ATPase (PMCA), the enzyme responsible for the maintenance of intrac...
Ca(2+) in neurons is vital to processes such as neurotransmission, neurotoxicity, synaptic developme...
Plasma membrane Ca²+ ATPase (PMCA) pump isoforms 2, 3, and 1CII are expressed in large amounts in t...
AbstractIn this review the four different genes of the mammalian plasma membrane calcium ATPase (PMC...
Spatial and temporal control of intracellular calcium signaling is essential for neuronal developmen...
Abstract Background Plasma membrane Ca2+-ATPases (PMCAs) are high affinity Ca2+ transporters activel...