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PMID: 747666 Published · ppublish English Journal Article

Anion/calcium ion ratios and proton production in some mitochondrial calcium ion uptakes.

The Biochemical journal ·Vol. 176 ·No. 3 ·1978-12-15 ·Pages 983-91

Harris EJ

Abstract

The uptake of Ca2+ by liver mitochondria, when phosphate movement is inhibited, occurs when Co2 is present and not in its absence. Uptake of Ca2+ to form CaCO3 yields 2H+/Ca2+. Heart mitochondria, when phosphate movement is inhibited, will take up Ca2+ with the exact equivalent of hydroxybutyrate, lactate or acetate. By providing a carrier for Cl- with tributyltin, a stoicheiometric uptake of Cl- with the Ca2+ takes place. The uptakes appear to occur without significant pH change; there appears to be no CO2-dependent uptake into heart mitochondria. Oxygenation of anaerobic heart mitochondria, in the presence of an inhibitor of phosphate movement and of generation of phosphate from internal ATP, does not yield significant change of external acidity in relation to the amount of O2 added. Use of Bromothymol Blue as an indicator of the distribution of a weak acid anion confirms that the transient nature of the response of the dye distribution to Ca2+ is connected with movement of endogenous phosphate. Bromothymol Blue accumulated in response to Ca2+ is discharged when entry of the Ca2+ (in the presence of mersalyl) is mediated with nigericin. It is concluded that Ca2+ uptakes will occur alternatively with the equivalent of anions or in exchange for endogenous K+ and that proton production is connected with the changes of ionization of phosphate (unless phosphate movement is inhibited) and in liver mitochondria with the hydration of CO2.

MeSH Terms
Acids/metabolism Animals Anions Calcium/metabolism Carbon Dioxide/metabolism In Vitro Techniques Mersalyl/pharmacology Mitochondria/metabolism Mitochondria, Heart/metabolism Mitochondria, Liver/metabolism Nigericin/pharmacology Oxygen Consumption Phosphates/metabolism Protons Rats
Chemicals
Acids Anions Phosphates Protons Carbon Dioxide Mersalyl Nigericin Calcium
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Harris E J
References (33)
33 references, click to expand
  1. Hydrogen ion concentration changes in mitochondrial membranes.
    J Biol Chem. 1966 Oct 25;241(20):4588-99 PMID: 5926170
  2. Respiration-dependent transport of carbon dioxide into rat liver mitochondria.
    Biochemistry. 1973 Feb 27;12(5):976-82 PMID: 4631372
  3. Stoichiometric relationship between energy-dependent proton ejection and electron transport in mitochondria.
    Proc Natl Acad Sci U S A. 1976 Feb;73(2):437-41 PMID: 1061146
  4. Antibiotic-mediated transport of alkali ions across lipid barriers.
    Proc Natl Acad Sci U S A. 1967 Nov;58(5):1949-56 PMID: 4230180
  5. Kinetic and equilibrium studies on the reversal of calcium-induced intramitochondrial alkalinity by permeant anions.
    Arch Biochem Biophys. 1970 Jun;138(2):483-92 PMID: 5433582
  6. Phosphate transport in rat-liver mitochondria.
    Biochim Biophys Acta. 1971 Mar 2;226(2):297-308 PMID: 5575160
  7. CATION AND ANION BALANCE DURING ACTIVE ACCUMULATION OF CA++ AND MG++ BY ISOLATED MITOCHONDRIA.
    J Biol Chem. 1964 Sep;239:3055-61 PMID: 14217896
  8. Energy-dependent accumulation of calcium and phosphate by purified inner membrane vesicles of rat liver mitochondria.
    J Biol Chem. 1972 May 25;247(10):3107-13 PMID: 5027745
  9. STOICHIOMETRIC RELATIONSHIPS BETWEEN ACCUMULATION OF IONS BY MITOCHONDRIA AND THE ENERGY-COUPLING SITES IN THE RESPIRATORY CHAIN.
    Biochem Z. 1963;338:698-713 PMID: 14087335
  10. Accumulation of calcium and phosphate stimulated by carboxylic antibiotics into mitochondria.
    J Bioenerg. 1972 Aug;3(5):361-75 PMID: 4656358
  11. A mechanism for the reactions of calcium with mitochondria.
    Proc Natl Acad Sci U S A. 1965 May;53(5):1069-76 PMID: 5222550
  12. Effects of trialkyltin and triphenyltin compounds on mitochondrial respiration.
    Eur J Biochem. 1970 Aug;15(2):342-51 PMID: 5502666
  13. The importance of CO2 for Ca2+ uptake by some mitochondria.
    Nature. 1978 Aug 24;274(5673):820-1 PMID: 28485
  14. Equilibration of chloride and pyruvate distributions between liver mitochondria and medium mediated by organo-tin salts.
    FEBS Lett. 1973 Feb 1;29(3):339-344 PMID: 11946948
  15. The effect of endogenous phosphate on the H+/Mn2+ ratio and the state of Mn2+ in the mitochondrial matrix.
    Eur J Biochem. 1976 Dec;71(1):93-9 PMID: 12961
  16. Determination of intramitochondrial pH and intramitochondrial-extramitochondrial pH gradient of isolated heart mitochondria by the use of 5,5-dimethyl-2,4-oxazolidinedione. I. Changes during respiration and adenosine triphosphate-dependent transport of Ca++, Mg++, and Zn++.
    J Biol Chem. 1968 May 10;243(9):2337-48 PMID: 5648435
  17. STUDIES ON ION TRANSPORT. III. THE ACCUMULATION OF CALCIUM AND INORGANIC PHOSPHATE BY HEART MITOCHONDRIA.
    Arch Biochem Biophys. 1964 Apr;105:89-102 PMID: 14165509
  18. The uptake and release of calcium by heart mitochondria.
    Biochem J. 1977 Dec 15;168(3):447-56 PMID: 204287
  19. Superstoichiometric Ca2+ uptake supported by hydrolysis of endogenous ATP in rat liver mitochondria.
    J Biol Chem. 1975 Oct 10;250(19):7958-60 PMID: 1176454
  20. Methodology for in vitro studies of Ca-2+ transport.
    Anal Biochem. 1975 Jul;67(1):44-54 PMID: 807125
  21. Stoichiometry of H+ ejection during respiration-dependent accumulation of Ca2+ by rat liver mitochondria.
    J Biol Chem. 1976 Feb 25;251(4):968-74 PMID: 2609
  22. Evidence of a phosphate-transporter system in the inner membrane of isolated mitochondria.
    Biochem J. 1969 Mar;111(5):665-78 PMID: 5783467
  23. The decrease of mitochondrial substrate uptake caused by trialkyltin and trialkyl-lead compounds in chloride media and its relevance to inhibition of oxidative phosphorylation.
    Biochem J. 1975 Feb;146(2):465-71 PMID: 808219
  24. THE ENERGY-LINKED REACTION OF CALCIUM WITH MITOCHONDRIA.
    J Biol Chem. 1965 Jun;240:2729-48 PMID: 14304892
  25. Calcium uptake and membrane potential in mitochondria.
    Biochemistry. 1974 Nov 5;13(23):4811-7 PMID: 4429666
  26. The phosphate requirement for Ca2+-uptake by heart and liver mitochondria.
    FEBS Lett. 1977 Jul 15;79(2):284-90 PMID: 891942
  27. Binding changes and apparent pK a shifts of bromthymol blue as tools for mitochondrial reactions.
    Arch Biochem Biophys. 1972 Jul;151(1):295-303 PMID: 5044520
  28. Mitochondria and calcium ion transport.
    Biochem J. 1970 Sep;119(2):129-38 PMID: 4922961
  29. Calcium ion-induced uptakes and transormations of substrates in liver mitochondria.
    Biochem J. 1969 Dec;115(4):645-52 PMID: 4311437
  30. The effects of colloids on the appearance and substrate permeability of rat liver mitochondria.
    J Bioenerg. 1971 Aug;2(3):221-32 PMID: 5135308
  31. On the mechanism by which inorganic phosphate stimulates mitochondrial calcium transport.
    FEBS Lett. 1977 Nov 1;83(1):155-8 PMID: 923818
  32. A physico-chemical basis for anion, cation and proton distributions between rat-liver mitochondria and the suspending medium.
    J Bioenerg. 1973 Jan;4(1):179-85 PMID: 4577757
  33. The mechanism of ion translocation in mitochondria. 4. Coupling of K+ efflux with Ca2+ uptake.
    Eur J Biochem. 1970 Feb;12(2):328-35 PMID: 5459571
Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
0264-6021
Published
1978-12-15
Pages
983-91
Language
English
Region
England
NLM ID
2984726R
PMCID
PMC1186324
Subset
IM
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