Javascript must be enabled to continue!
Calcium/Calmodulin‐dependent protein kinase activity in primary astrocyte cultures
View through CrossRef
AbstractCalcium, calmodulin‐dependent protein kinase (Ca/CaM kinase) is an important component of calcium signalling mechanisms in the brain, but little is known about the properties of this protein phosphorylation system in astrocytes. Addition of calcium and calmodulin to supernatant or membrane fractions obtained from rat astrocytes in primary culture increased phosphate incorporation into an exogenously added substrate, casein, and into endogenous protein substrates; this increase was greater than that observed with either calcium alone or calmodulin alone. The calcium, calmodulin‐stimulated increase was inhibited by trifluoperazine, and this inhibition could be overcome by the addition of excess calmodulin. The major substrates for Ca/CaM kinase activity were proteins with molecular weights of 59 and 53 kDa, which were similar, but not identical, to the subunits of Ca/CaM kinase type II from brain. The specific activity of Ca/CaM kinase and the phosphorylation of 59 kDa were increased in astrocyte cultures treated and maintained in dibutyryl cyclic adenosine monophosphate (dBcAMP). These results indicate that astrocytes contain Ca/CaM kinase activity and suggest an interaction between the cAMP and calcium/calmodulin messenger systems in these cells.
Title: Calcium/Calmodulin‐dependent protein kinase activity in primary astrocyte cultures
Description:
AbstractCalcium, calmodulin‐dependent protein kinase (Ca/CaM kinase) is an important component of calcium signalling mechanisms in the brain, but little is known about the properties of this protein phosphorylation system in astrocytes.
Addition of calcium and calmodulin to supernatant or membrane fractions obtained from rat astrocytes in primary culture increased phosphate incorporation into an exogenously added substrate, casein, and into endogenous protein substrates; this increase was greater than that observed with either calcium alone or calmodulin alone.
The calcium, calmodulin‐stimulated increase was inhibited by trifluoperazine, and this inhibition could be overcome by the addition of excess calmodulin.
The major substrates for Ca/CaM kinase activity were proteins with molecular weights of 59 and 53 kDa, which were similar, but not identical, to the subunits of Ca/CaM kinase type II from brain.
The specific activity of Ca/CaM kinase and the phosphorylation of 59 kDa were increased in astrocyte cultures treated and maintained in dibutyryl cyclic adenosine monophosphate (dBcAMP).
These results indicate that astrocytes contain Ca/CaM kinase activity and suggest an interaction between the cAMP and calcium/calmodulin messenger systems in these cells.
Related Results
Functional, genetic and bioinformatic characterization of a calcium/calmodulin kinase gene in Sporothrix schenckii
Functional, genetic and bioinformatic characterization of a calcium/calmodulin kinase gene in Sporothrix schenckii
Abstract
Background
Sporothrix schenckii is a pathogenic, dimorphic fungus, the etiological agent of sporotrichosis, a subcutaneou...
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Calcium/Calmodulin Protein Kinase II-Dependent Ryanodine Receptor Phosphorylation Mediates Cardiac Contractile Dysfunction Associated With Sepsis
Calcium/Calmodulin Protein Kinase II-Dependent Ryanodine Receptor Phosphorylation Mediates Cardiac Contractile Dysfunction Associated With Sepsis
Objectives:
Sepsis is associated with cardiac contractile dysfunction attributed to alterations in Ca2+ handling. We examined the subcellular mechanisms involved in sar...
Temporal relation of calcium-calmodulin binding and neuronal damage after global ischemia in rats.
Temporal relation of calcium-calmodulin binding and neuronal damage after global ischemia in rats.
This study explores the temporal relation of the severity of ischemia and calcium-calmodulin binding in vulnerable and resistant brain regions in a commonly used model of global is...
Dietary calcium, defective cellular Ca2+ handling, and arterial pressure control
Dietary calcium, defective cellular Ca2+ handling, and arterial pressure control
The association between dietary calcium intake, calcium metabolism, and blood pressure form the basis of this review. Epidemiologic data consistently show an inverse relationship b...
Striatal cholinergic and dopaminergic driven astrocyte Ca
2+
activity is disrupted in Parkinsonian mice
Striatal cholinergic and dopaminergic driven astrocyte Ca
2+
activity is disrupted in Parkinsonian mice
Abstract
Brain neuromodulatory systems exert powerful effects on local neuronal circuit function and behavior. In addition to classical actions d...
Threshold of calcium disturbances after focal cerebral ischemia in rats. Implications of the window of therapeutic opportunity.
Threshold of calcium disturbances after focal cerebral ischemia in rats. Implications of the window of therapeutic opportunity.
One explanation for inconclusive results with calcium channel blockers in human acute stroke trials may be incomplete information about the time course of calcium-mediated ischemic...
British Food Journal Volume 45 Issue 9 1943
British Food Journal Volume 45 Issue 9 1943
I now pass on to an aspect of calcium metabolism which is more topical, but probably more controversial. I refer to the incidence of calcium deficiency. By what means can we determ...

