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PMID: 9765253 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S.

Hypo-osmotic shock of tobacco cells stimulates Ca2+ fluxes deriving first from external and then internal Ca2+ stores.

The Journal of biological chemistry ·Vol. 273 ·No. 42 ·1998-10-16 ·Pages 27286-91

Cessna SG, Chandra S, Low PS

Abstract

Hypo-osmotic shock of aequorin-transformed tobacco cells induces a biphasic cytosolic Ca2+ influx. Because both phases of Ca2+ entry are readily blocked by Ca2+ channel inhibitors, we conclude that the Ca2+ transients are mediated by Ca2+ channels. Evidence that the first but not second Ca2+ transient derives from external Ca2+ stores is that the first but not second influx is (i) eliminated by membrane-impermeable Ca2+ chelators, (ii) enlarged by supplementation of the medium with excess Ca2+, and (iii) reduced by the addition of competitive cations such as Mg2+ and Mn2+. Furthermore, entry of 45Ca during osmotic shock is prevented by inhibitors of the first but not second phase of Ca2+ entry. Evidence that the second wave of Ca2+ influx stems from release of intracellular Ca2+ is based on the above data plus observations that probable modulators of intracellular Ca2+ channels selectively block this phase of Ca2+ influx. Finally, a mechanism of communication between the two Ca2+ release pathways has become apparent, since perturbations that elevate or reduce the first Ca2+ transient lead to a compensating diminution/elevation of the second and vice versa. These data thus suggest that osmotic shock leads to the sequential opening of extracellular followed by intracellular Ca2+ stores and that these Ca2+ release pathways are internally compensated.

MeSH Terms
Aequorin Biological Transport Caffeine/pharmacology Calcium/metabolism Calcium Channels/metabolism Calcium Signaling Cell Compartmentation Cytosol/metabolism Egtazic Acid/pharmacology Ion Channels/metabolism Kinetics Lanthanum/pharmacology Magnesium/pharmacology Niflumic Acid/pharmacology Osmotic Pressure Plants, Toxic Respiratory Burst Tobacco/cytology,metabolism
Chemicals
Calcium Channels Ion Channels Caffeine Niflumic Acid Aequorin Egtazic Acid Lanthanum Magnesium Calcium
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Cessna S G
Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-1393, USA.
Chandra S
Low P S
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1998-10-16
Pages
27286-91
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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