Literature DB >> 36390

Regulated release of Ca2+ from respiring mitochondria by Ca2+/2H+ antiport.

G Fiskum, A L Lehninger.   

Abstract

Simultaneous measurements of oxygen consumption and transmembrane transport of Ca2+, H+, and phosphate show that the efflux of Ca2+ from respiring tightly coupled rat liver mitochondria takes place by an electroneutral Ca2+/2H+ antiport process that is ruthenium red-insensitive and that is regulated by the oxidation-reduction state of the mitochondrial pyridine nucleotides. When mitochondrial pyridine nucleotides are kept in a reduced steady state, the efflux of Ca2+ is inhibited; when they are in an oxidized state, Ca2+ efflux is activated. These processes were demonstrated by allowing phosphate-depleted mitochondria respiring on succinate in the presence of rotenone to take up Ca2+ from the medium. Upon subsequent addition of ruthenium red to block Ca2+ transport via the electrophoretic influx pathway, and acetoacetate, to bring mitochondrial pyridine nucleotides into the oxidized state, Ca2+ efflux and H+ influx ensued. The observed H+ influx/Ca2+ efflux ratio was close to the value 2.0 predicted for the operation of an electrically neutral Ca2+/2H+ antiport process.

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Year:  1979        PMID: 36390

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  29 in total

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2.  The reversible Ca2+-induced permeabilization of rat liver mitochondria.

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Review 4.  Characteristics and possible functions of mitochondrial Ca(2+) transport mechanisms.

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5.  Modulation of cell calcium signals by mitochondria.

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Review 6.  Permeability transition pore of the inner mitochondrial membrane can operate in two open states with different selectivities.

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Review 7.  Mitochondrial reactive oxygen species (ROS) and ROS-induced ROS release.

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8.  Electroneutral efflux of Ca2+ from liver mitochondria.

Authors:  M D Brand
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9.  Intracellular pH during ischemia in skeletal muscle: relationship to membrane potential, extracellular pH, tissue lactic acid and ATP.

Authors:  H Hagberg
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10.  Proton translocation by the mitochondrial cytochrome b-c1 complex is inhibited by NN'-dicyclohexylcarbodi-imide.

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