Characterization of the ATP-dependent calcium efflux in dialyzed squid giant axons.

Author:

DiPolo R

Abstract

The magnitude of the activating effect of ATP on the Ca efflux was explored at different [Ca++]i in squid axons previously exposed to cyanide seawater and internally dialyzed with a medium free of ATP and containing p-trifluoro methoxy carbonyl cyanide phenyl hydrazine. At the lowest [Ca++]i used (0.06 micron more than 95% of the Ca efflux depends on ATP. At high [Ca++]i (100 micron), 50-60% of the Ca efflux still depends on ATP. The apparant affinity constant for ATP was not significantly affected in the range of [Ca++]i from 0.06 to 1 micron. Axons dialyzed to reduce their internal magnesium failed to show the usual activation of the Ca efflux when the Tris or the sodium salt of ATP was used. Only in the presence of internal magnesium is ATP able to stimulate the Ca efflux. Nine naturally occurring high-energy phosphate compounds were ineffective in supporting calcium efflux. These compounds were: UTP, GTP, CTP, UDP, CDP, ADP, AMP, CAMP, and acetyl phosphate. The compounds 2' deoxy-ATP and the hydrolyzable analog alpha,beta-methylene ATP were able to activate the Ca efflux. The nonhydrolyzable analog beta,gamma-methylene ATP competes with ATP for the activating site, but is unable to activate the Ca efflux. The results are discussed in terms of the specificity of the nucleotide site responsible for the ATP-dependent Ca efflux.

Publisher

Rockefeller University Press

Subject

Physiology

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1. ATP Dependence of Na+-Driven Cl–HCO3 Exchange in Squid Axons;Journal of Membrane Biology;2008-04

2. Phosphorylation of the Na+/Ca2+ Exchangers by PKA;Annals of the New York Academy of Sciences;2006-01-24

3. Electrogenic Na+/Ca2+ Exchange;Journal of General Physiology;2000-06-01

4. Metabolic pathways in the regulation of invertebrate and vertebrate Na+/Ca2+ exchange;Biochimica et Biophysica Acta (BBA) - Reviews on Biomembranes;1999-02

5. Effect of ATP Depletion on Kinetics of Na/Ca Exchange-mediated Ca Influx in Na-loaded Heart Cells;Journal of Molecular and Cellular Cardiology;1997-02

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