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Respiratory Control and the Proton Electrochemical Gradient in Mitochondria
Etana Padan
*
, Hagai Rottenberg
*
Corresponding author for this work
Alexander Silberman Institute of Life Sciences
Research output
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Article
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peer-review
165
Scopus citations
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Keyphrases
Mitochondria
100%
Electrochemical Proton Gradient
100%
Respiratory Control
100%
Valinomycin
100%
Respiration
66%
Respiratory Rate
66%
Phosphorylation
33%
Oxidative Phosphorylation (OXPHOS)
33%
Rat Liver Mitochondria
33%
Electron Transport
33%
Uncoupler
33%
Respiration Rate
33%
Linear Relationship
33%
Phosphorylation Reaction
33%
Inner Membrane
33%
KCl Concentration
33%
Dinitrophenol
33%
Reaction Control
33%
Dione
33%
Uncoupled Systems
33%
Gramicidin
33%
Chemiosmotic
33%
Chemistry
phosphorylation
100%
Valinomycin
100%
Dinitrophenol
33%
Electron Transport
33%
Pharmacology, Toxicology and Pharmaceutical Science
Potassium 42
33%