Coupling between H+ entry and ATP formation in Escherichia coli
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Molecular Biology,Biochemistry,Biophysics
Reference23 articles.
1. Coupling of Phosphorylation to Electron and Hydrogen Transfer by a Chemi-Osmotic type of Mechanism
2. Oxidative Phosphorylation and Photophosphorylation
3. Membranes and Energy Transduction in Bacteria1 1Abbreviations: Δψ, membrane potential; ΔpH, pH gradient; Δp, proton-motive force. These are related by: Δp = Δψ - (23RT/F) ΔpH ≅ Δψ - 60 ΔpH. ANS, l-anilino-8-naphthalene sulfonate; DCCD, N, N'-dicyclohexylcarbodiimide; CCCP, carbonylcyanide-m-chlorophenylhydrazone; HOQNO, hydroxyquinoline-N-oxide; PEP, phosphoenolpyruvic acid. EDTA, ATP, GTP, DNA, NAD(H), and NADP(H) have their usual meanings.
4. Respiration-driven proton translocation in Escherichia coli (Short Communication)
5. Oxidative phosphorylation and proton translocation in membrane vesicles prepared from Escherichia coli
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2. Chloride transport pathways and their bioenergetic implications in the obligate acidophile Bacillus coagulans;Journal of Bacteriology;1990-03
3. A study on Na+-coupled oxidative phosphorylation: ATP formation supported by artificially imposed ?pNa and ?pK inVibrio alginolyticus cells;Journal of Bioenergetics and Biomembranes;1989-06
4. Transmembrane electrical potential in Rickettsia prowazekii and its relationship to lysine transport;Journal of Bacteriology;1983-02
5. Stoichiometry of proton movements coupled to ATP synthesis driven by a pH gradient inStreptococcus lactis;The Journal of Membrane Biology;1982-12
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