Statements in which the resource exists as a subject.
PredicateObject
rdf:type
lifeskim:mentions
pubmed:issue
40
pubmed:dateCreated
2003-9-29
pubmed:abstractText
Phosphate (Pi) is a putative cytosolic signaling molecule in the regulation of oxidative phosphorylation. Here, by using a multiparameter monitoring system, we show that Pi controls oxidative phosphorylation in a balanced fashion, modulating both the generation of useful potential energy and the formation of ATP by F1F0-ATPase in heart and skeletal muscle mitochondria. In these studies the effect of Pi was determined on the mitochondria [NADH], NADH generating capacity, matrix pH, membrane potential, oxygen consumption, and cytochrome reduction level. Pi enhanced NADH generation and was obligatory for electron flow under uncoupled conditions. Pi oxidized cytochrome b (cyto-b) and reduced cytochrome c (cyto-c), potentially improving the coupling between the NADH free energy and the proton motive force. The apparent limitation in reducing equivalent flow between cyto-b and cyto-c in the absence of Pi was confirmed in the intact heart by using optical spectroscopic techniques under conditions with low cytosolic [Pi]. These results demonstrate that Pi signaling results in the balanced modulation of oxidative phosphorylation, by influencing both deltaGH+ generation and ATP production, which may contribute to the energy metabolism homeostasis observed in intact systems.
pubmed:language
eng
pubmed:journal
pubmed:citationSubset
IM
pubmed:chemical
pubmed:status
MEDLINE
pubmed:month
Oct
pubmed:issn
0021-9258
pubmed:author
pubmed:issnType
Print
pubmed:day
3
pubmed:volume
278
pubmed:owner
NLM
pubmed:authorsComplete
Y
pubmed:pagination
39155-65
pubmed:dateRevised
2003-11-14
pubmed:meshHeading
pubmed-meshheading:12871940-Adenosine Diphosphate, pubmed-meshheading:12871940-Adenosine Triphosphate, pubmed-meshheading:12871940-Animals, pubmed-meshheading:12871940-Cytochromes, pubmed-meshheading:12871940-Dose-Response Relationship, Drug, pubmed-meshheading:12871940-Hydrogen-Ion Concentration, pubmed-meshheading:12871940-Kinetics, pubmed-meshheading:12871940-Light, pubmed-meshheading:12871940-Membrane Potentials, pubmed-meshheading:12871940-Mitochondria, pubmed-meshheading:12871940-Models, Biological, pubmed-meshheading:12871940-Muscle, Skeletal, pubmed-meshheading:12871940-Myocardium, pubmed-meshheading:12871940-NAD, pubmed-meshheading:12871940-Oxidation-Reduction, pubmed-meshheading:12871940-Oxygen, pubmed-meshheading:12871940-Phosphates, pubmed-meshheading:12871940-Phosphorylation, pubmed-meshheading:12871940-Protons, pubmed-meshheading:12871940-Rabbits, pubmed-meshheading:12871940-Signal Transduction, pubmed-meshheading:12871940-Spectrophotometry, pubmed-meshheading:12871940-Swine, pubmed-meshheading:12871940-Thermodynamics, pubmed-meshheading:12871940-Time Factors
pubmed:year
2003
pubmed:articleTitle
Metabolic network control of oxidative phosphorylation: multiple roles of inorganic phosphate.
pubmed:affiliation
Laboratory of Cardiac Energetics, NHLBI, National Institutes of Health, Department of Health and Human Services, Bethesda, Maryland 20892, USA.
pubmed:publicationType
Journal Article