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PMID: 8476022 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S.

Cytosolic free calcium regulation in response to acute changes in intracellular pH in vascular smooth muscle.

The American journal of physiology ·Vol. 264 ·No. 4 Pt 1 ·1993-04-00 ·Pages C932-43

Batlle DC, Peces R, LaPointe MS, Ye M, Daugirdas JT

Abstract

This study examined the mechanisms whereby alterations of intracellular pH (pHi) impact on free cytosolic calcium (Cai2+) in cultured rat aortic vascular smooth muscle cells (VSMC) assayed in the presence of HCO3/CO2. Rapid cell alkalinization, effected by the exposure to NH4Cl or removal of CO2 from the superfusate, produced a rapid increase in Cai2+. The rise in Cai2+ was markedly diminished when sarcoplasmic reticulum (SR) Ca2+ stores had been depleted by prior exposure to arginine vasopressin (AVP) in Ca(2+)-free media or when SR release and reuptake of Ca2+ were blocked by the addition of 3,4,5-trimethoxybenzoic acid 8-(diethylamino)octyl ester (TMB-8), but was unaffected by the removal of external Ca2+ or inhibition of Ca2+ entry using NiCl2. Cell acidification also resulted in a rapid increase in Cai2+. This Cai2+ increase was most apparent when pHi was very low (< 6.6) and was unaffected by removal of external Ca2+ or NiCl2 addition. Unlike the effect of cell alkalinization, the increase in Cai2+ associated with cell acidification was not prevented by pretreatment with AVP or TMB-8. We conclude that, in cultured VSMC, acute intracellular alkalinization and, to a lesser extent, acidification result in release of Ca2+ from internal stores. Alkalinization increases Cai2+ by promoting its release from a store which is AVP and TMB-8 sensitive, most likely the SR. Cell acidification increases Cai2+ from an intracellular store(s) that is neither AVP nor TMB-8 sensitive. The increase in Cai2+ produced by cell acidification may be explained on the basis of cell buffering such that, as cytosolic H+ increases, it displaces Cai2+ from internal buffers with similar affinities for Ca2+ and H+.

MeSH Terms
Ammonium Chloride/pharmacology Animals Aorta, Thoracic/metabolism Arginine Vasopressin/pharmacology Biological Transport, Active/drug effects Calcium/metabolism Carbon Dioxide/pharmacology Cells, Cultured Cytosol/drug effects,metabolism Egtazic Acid/pharmacology Hydrogen-Ion Concentration Intracellular Fluid/metabolism Kinetics Male Muscle, Smooth, Vascular/metabolism Nickel/pharmacology Rats Sodium/antagonists & inhibitors Time Factors
Chemicals
Ammonium Chloride Arginine Vasopressin Carbon Dioxide Egtazic Acid nickel chloride Nickel Sodium Calcium
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Batlle D C
Department of Medicine, Northwestern University Medical School, Chicago, Illinois.
Peces R
LaPointe M S
Ye M
Daugirdas J T
Article Info
Journal
The American journal of physiology
Abbr.
Am J Physiol
ISSN
0002-9513
Published
1993-04-00
Pages
C932-43
Language
English
Region
United States
NLM ID
0370511
Subset
IM
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