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PMID: 3013859 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Evidence that Na+/H+ exchange regulates receptor-mediated phospholipase A2 activation in human platelets.

The Journal of biological chemistry ·Vol. 261 ·No. 19 ·1986-07-05 ·Pages 8667-73

Sweatt JD, Connolly TM, Cragoe EJ, Limbird LE

Abstract

Data in the previous paper suggest that epinephrine can mobilize a small pool of arachidonic acid via an enzymatic pathway distinct from phospholipase C and that this pathway is blocked by perturbations that block Na+/H+ exchange. The present studies demonstrate that epinephrine and ADP stimulate a phosphatidylinositol-hydrolyzing phospholipase A2 activity in human platelets. This occurs even when measurable phospholipase C activation, platelet secretion, and secondary aggregation are blocked with the thromboxane A2 receptor antagonist SQ29548. Furthermore, perturbants of Na+/H+ exchange diminish lysophosphatidylinositol production in response to epinephrine, ADP, and thrombin, but not to the Ca2+ ionophore A23187. Artificial alkalinization of the platelet interior with methylamine reverses the effect of the Na+/H+ antiporter inhibitor, ethylisopropylamiloride, on thrombin-stimulated lysolipid production, suggesting that the alkalinization of the platelet interior which would occur secondary to activation of Na+/H+ exchange might play an important role in phospholipase A2 activation. In addition, treatment of platelets with methylamine increases the sensitivity of phospholipase A2 to activation by the Ca2+ ionophore A23187, suggesting that changes in pH and Ca2+ may regulate phospholipase A2 activity synergistically. Finally, epinephrine causes a prompt decrease in platelet-chlortetracyclin fluorescence even in the presence of cyclooxygenase inhibitors, suggesting that epinephrine is able to mobilize membrane-bound Ca2+ independent of phospholipase C activation. Taken together, the data suggest that epinephrine-provoked stimulation of phospholipase A2 activity may occur as a result of Ca2+ mobilization and a concomitant intraplatelet alkalinization resulting from accelerated Na+/H+ exchange.

MeSH Terms
Adenosine Diphosphate/pharmacology Arachidonic Acid Arachidonic Acids/blood Blood Platelets/drug effects,metabolism Calcimycin/pharmacology Carrier Proteins/blood Chlortetracycline/pharmacology Enzyme Activation Epinephrine/pharmacology Humans Kinetics Lysophospholipids Methylamines/pharmacology Phosphates/blood Phosphatidylinositols/biosynthesis,blood Phospholipases/blood Phospholipases A/blood Phospholipases A2 Sodium-Hydrogen Exchangers
Chemicals
Arachidonic Acids Carrier Proteins Lysophospholipids Methylamines Phosphates Phosphatidylinositols Sodium-Hydrogen Exchangers lysophosphatidylinositol Arachidonic Acid Calcimycin Adenosine Diphosphate methylamine Phospholipases Phospholipases A Phospholipases A2 Chlortetracycline Epinephrine
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Sweatt J D
Connolly T M
Cragoe E J
Limbird L E
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
1986-07-05
Pages
8667-73
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
Grants
NIGMS NIH HHS · GM 07628 · United States
NHLBI NIH HHS · HL 25182 · United States
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