Kinetic properties of the sodium/hydrogen ion antiport of heart mitochondria
- 1 May 1989
- journal article
- research article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 28 (10) , 4347-4354
- https://doi.org/10.1021/bi00436a034
Abstract
The fluorescence of 2'',7''-bis(carboxyethyl)-5(6)-carboxyfluorescein (BCECF) has been used to follow tha Na+/H+ antiport activity of isolated heart mitochondria as a Na+-dependent extrusion of matrix H+. The antiport activity measured in this way shows a hyperbolic dependence on external Na+ or Li+ concentration when the external pH (pHo) is 7.2 or higher. The apparent Km for Na+ decreases with increasing pHo to a limit of 4.6 mM. The Ki for external H+ as a competitive inhibitor of Na+/H+ antiport averages 3.0 nM (pHo 8.6). The Vmax at 24.degree. C is 160 ng ion of H+ min-1 (mg of protein)-1 and does not vary with pHo. Li+ reacts with the antiporter with higher affinity, but much lower Vmax, and is a competitive inhibitor of Na+/H+ antiport. The rate of Na+/H+ antiport is optimal when the pHi is near 7.2. When pHo is maintained constant, Na+-dependent extrusion of matrix H+ shows a hyperbolic dependence on [H+]i with an apparent Km corresponding to a pHi of 6.8. The Na+/H+ antiport is inhibited by benzamil and by 5-N-substituted amiloride analogues with I50 values in the range from 50 to 100 .mu.M. The pH profile for this inhibition seems consistent with the availability of a matrix binding site for the amiloride analogues. The mitochondrial Na+/H+ antiport resembles the antiport found in the plasma membrane of mammalian cells in that Na+, Li+, and external H+ appear to compete for a common external binding site and both exchanges are inhibited by amiloride analogues. However, there are significant differences in the sensitivity of the two antiports to these inhibitors, and the mitochondrial exchanger appears to operate in a more alkaline region than the plasmalemmal component. The increased affinity of the antiport for Na+ with increasing pH is in line with the putative role of this exchanger as a device for extruding Na+ from the alkaline matrix of respiring mitochondria.This publication has 19 references indexed in Scilit:
- Quinine inhibition of Na+ and K+ transport provides evidence for two cation/H+ exchangers in rat liver mitochondria.Published by Elsevier ,2021
- The permeability of uncoupled heart mitochondria to potassium ion.Journal of Biological Chemistry, 1984
- STRUCTURE-ACTIVITY-RELATIONSHIPS OF AMILORIDE AND CERTAIN OF ITS ANALOGS IN RELATION TO THE BLOCKADE OF THE NA+/H+ EXCHANGE SYSTEM1984
- K+/H+ ANTIPORT IN HEART-MITOCHONDRIA1984
- Interaction of external H+ with the Na+-H+ exchanger in renal microvillus membrane vesicles.Journal of Biological Chemistry, 1983
- Cytoplasmic pH and free Mg2+ in lymphocytes.The Journal of cell biology, 1982
- The Cycling of Calcium, Sodium, and Protons Across the Inner Membrane of Cardiac MitochondriaEuropean Journal of Biochemistry, 1978
- Energy-dependent contraction of swollen heart mitochondria.Journal of Biological Chemistry, 1977
- Respiration-driven proton translocation in rat liver mitochondriaBiochemical Journal, 1967
- Pyrazine Diuretics. II. N-Amidino-3-amino-5-substituted 6-HalopyrazinecarboxamidesJournal of Medicinal Chemistry, 1967