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PMID: 12879862 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The plasma membrane calcium-ATPase as a major mechanism for intracellular calcium regulation in neurones from the rat superior cervical ganglion.

The Journal of physiology ·Vol. 550 ·No. Pt 1 ·2003-07-01 ·Pages 83-101

Wanaverbecq N, Marsh SJ, Al-Qatari M, Brown DA

Abstract

Patch-clamp recording combined with indo-l measurement of free intracellular calcium concentration ([Ca2+]i) was used to determine the homeostatic systems involved in the maintenance of resting [Ca2+]I and in the clearance of Ca2+ transients following activation of voltage-gated Ca2+ channels in neurones cultured from rat superior cervical ganglion (SCG). The Ca2+ binding ratio was estimated to be approximately 500 at 100 nM, decreasing to approximately 250 at [Ca2+]i approximately 1 pM, and to involve at least two buffering systems with different affinities for Ca2+. Removal of extracellular Ca2+ led to a decrease in[Ca2+]i that was mimicked by the addition of La3+, and was more pronounced after inhibition of the endoplasmic reticulum Ca2+ uptake system (SERCA). Inhibition of the plasma membrane Ca2+ pump (PMCA) by extracellular allkalinisation (pH 9) or intracellular carboxyeosin both increased resting [Ca2+]i and prolonged the recovery of Ca2+ transients at peak [Ca2+]i C 500 nM. For [Ca2+]i loads >500 nM, recovery showed an additional plateau phase that was abolished i nm-chlorophenylhydrazone (CCCP) or on omitting intracellular Na+. Inhibition of the plasma membrane Na+ -Ca2+ exchanger (NCX) and of SERCA had a small but significant additional effect on the rate of decay of these larger Ca2+ transients. In conclusion, resting [Ca2+]i is maintained by passive Ca2+ influx and regulated by a large Ca2+ buffering system, Ca2+ extrusion via a PMCA and Ca2+ transport from the intracellular stores. PMCA is also the principal Ca2+ extrusion system at low Ca2+ loads, with additional participation of the NCX and intracellular organelles at high [Ca2+]i.

MeSH Terms
Animals Buffers Calcium/metabolism Calcium-Transporting ATPases/physiology Carrier Proteins/metabolism Cation Transport Proteins Cells, Cultured Electrophysiology Homeostasis Immunohistochemistry Intracellular Membranes/metabolism Mitochondria/physiology Models, Neurological Neurons/metabolism Osmolar Concentration Patch-Clamp Techniques Plasma Membrane Calcium-Transporting ATPases Polymerase Chain Reaction Rats Rats, Sprague-Dawley Sarcoplasmic Reticulum Calcium-Transporting ATPases Sodium-Calcium Exchanger/physiology Superior Cervical Ganglion/cytology,metabolism Time Factors
Chemicals
Buffers Carrier Proteins Cation Transport Proteins Sodium-Calcium Exchanger sodium-calcium exchanger 1 Plasma Membrane Calcium-Transporting ATPases Sarcoplasmic Reticulum Calcium-Transporting ATPases Calcium-Transporting ATPases Calcium
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Wanaverbecq N
Department of Pharmacology, University College London, UK. [email protected]
Marsh S J
Al-Qatari M
Brown D A
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Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
2003-07-01
Pages
83-101
Language
English
Region
England
NLM ID
0266262
PMCID
PMC2343008
Subset
IM
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