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PMID: 12065603 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

A perforated patch-clamp study of calcium currents and exocytosis in chromaffin cells of wild-type and alpha(1A) knockout mice.

Journal of neurochemistry ·Vol. 81 ·No. 5 ·2002-06-00 ·Pages 911-21

Aldea M, Jun K, Shin HS, Andrés-Mateos E, Solís-Garrido LM, Montiel C, García AG, Albillos A

Abstract

Simultaneous recordings of inward whole-cell Ca(2+) channel currents (I(Ca) ) and increments of capacitance as an indication of exocytosis (Delta(Cm)), were performed in voltage-clamped single adrenal chromaffin cells from wild-type and alpha(1A) subunit deficient mice, using the perforated-patch configuration of the patch-clamp technique. Using protocol #1 (one single Ca(2+) channel blocker per cell), to dissect the components of I(Ca), L channels contributed 43%, N channels 35% and P/Q channels 30% to the total I(Ca) of wild-type cells. Using protocol #2 (cumulative sequential addition of 3 microm nifedipine, 1 microm omega-conotoxin GVIA, and 1 microm omega-agatoxin IVA), L, N and P/Q channels contributed 40%, 34% and 14%, respectively, to I(Ca); an R component of around 11% remained. In wild-type mice the changes of Delta(Cm) paralleled those of I(Ca). In alpha(1A) deficient mice the L component of I(Ca) rose to 53% while the P/Q disappeared; the N and R components were similar. In these mice, Delta(Cm) associated to N and R channels did not vary; however, the P/Q component was abolished while the L component increased by 20%. In conclusion, exocytosis was proportional to the relative density of each Ca(2+) channel subtype, L, N, P/Q, R. Ablation of the alpha(1A) gene led to a loss of P/Q channel current and to a compensatory increase of L channel-associated secretion; however, this compensation was not sufficient to maintain the overall exocytotic response, that was diminished by 35% in alpha(1A) -deficient mice. This may be due to altered Ca(2+) homeostasis in these mice, as compared to wild mouse chromaffin cells.

MeSH Terms
Animals Calcium/metabolism Calcium Channel Blockers/pharmacology Calcium Channels/drug effects,metabolism Calcium Channels, L-Type/metabolism Calcium Channels, N-Type/deficiency,genetics,metabolism Calcium Channels, R-Type/metabolism Chromaffin Cells/drug effects,metabolism Electric Capacitance Electric Stimulation Exocytosis/drug effects,physiology Genotype Heterozygote Homozygote In Vitro Techniques Mice Mice, Knockout Nifedipine/pharmacology Patch-Clamp Techniques Protein Subunits omega-Agatoxin IVA/pharmacology omega-Conotoxin GVIA/pharmacology
Chemicals
Calcium Channel Blockers Calcium Channels Calcium Channels, L-Type Calcium Channels, N-Type Calcium Channels, R-Type Protein Subunits omega-Agatoxin IVA voltage-dependent calcium channel (P-Q type) omega-Conotoxin GVIA Nifedipine Calcium
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Aldea Marcos
Instituto Teófilo Hernando, Departamento de Farmacología, Facultad de Medicina, Universidad Autónoma de Madrid, Spain.
Jun Kisun
Shin Hee-Sup
Andrés-Mateos Eva
Solís-Garrido Luisa M
Montiel Carmen
García Antonio G
Albillos Almudena
Article Info
Journal
Journal of neurochemistry
Abbr.
J Neurochem
ISSN
0022-3042
Published
2002-06-00
Pages
911-21
Language
English
Region
England
NLM ID
2985190R
Subset
IM
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