Restoration of CA2+-inhibited oxidative phosphorylation in cardiac mitochondria by mitochondrial Ca2+ unloading
- 1 January 2001
- journal article
- Published by Springer Nature in Molecular and Cellular Biochemistry
- Vol. 220 (1/2) , 135-140
- https://doi.org/10.1023/a:1010894427373
Abstract
Mitochondria, the major source of cellular ATP, display high vulnerability to metabolic stress, in particular to excessive Ca2+ loading. Here, we show that Ca2+-inhibited mitochondrial ATP generation could be restored through stimulated Ca2+ discharge from mitochondrial matrix. This was demonstrated using a Ca2+ ionophore or through Na+/Ca2+ exchange-mediated decrease of mitochondrial Ca2+ load. Furthermore, diazoxide, a mitochondrial potassium channel opener, which maintained mitochondrial Ca2+ homeostasis, also restored Ca2+-inhibited ATP synthesis and preserved the structural integrity of Ca2+-challenged mitochondria. Thus, under conditions of excessive mitochondrial Ca2+ overload targeting mitochondrial Ca2+ transport pathways restores oxidative phosphorylation required for vital cellular processes. This study, therefore, identifies an effective strategy capable to rescue Ca2+-disrupted mitochondrial energetics.Keywords
This publication has 29 references indexed in Scilit:
- Increased calcium vulnerability of senescent cardiac mitochondria: protective role for a mitochondrial potassium channel openerMechanisms of Ageing and Development, 2001
- Mitochondrial KATPChannels: Probing Molecular Identity and PharmacologyJournal of Molecular and Cellular Cardiology, 2000
- Opening of Mitochondrial K ATP Channels Triggers the Preconditioned State by Generating Free RadicalsCirculation Research, 2000
- The role of mitochondrial K(ATP) channels in cardioprotection.Basic Research in Cardiology, 2000
- ATP-Sensitive Potassium Channels: A Review of their Cardioprotective PharmacologyJournal of Molecular and Cellular Cardiology, 2000
- Adenylate Kinase–Catalyzed Phosphotransfer in the MyocardiumCirculation Research, 1999
- Contributions of mitochondria to animal physiology: from homeostatic sensor to calcium signalling and cell deathThe Journal of Physiology, 1999
- Mitochondrial Diseases in Man and MouseScience, 1999
- Mitochondrial ATP-sensitive K+channels modulate cardiac mitochondrial functionAmerican Journal of Physiology-Heart and Circulatory Physiology, 1998
- Mitochondrial calcium transport: physiological and pathological relevanceAmerican Journal of Physiology-Cell Physiology, 1994