Investigation of the apparent inefficiency of the coupling between Photosystem II electron transfer and ATP formation
Author:
Publisher
Elsevier BV
Subject
Cell Biology,Biochemistry,Biophysics
Reference35 articles.
1. The stoichiometry of photophosphorylation
2. Photooxidation of ferrocyanide and iodide ions and associated phosphorylation in NH2OH-treated chloroplasts
3. Photosystem I electron transport and phosphorylation supported by electron donation to the plastoquinone region
4. Properties of photoreductions by Photosystem II in isolated chloroplasts. An energy-conserving step in the photoreduction of benzoquinones by Photosystem II in the presence of dibromothymoquinone
5. Electron transport and photophosphorylation in chloroplasts as a function of the electron acceptor. III. A dibromothymoquinone-insensitive phosphorylation reaction associated with Photosystem II
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1. Measurement of Chloroplast ATP Synthesis Activity in Arabidopsis;Chloroplast Research in Arabidopsis;2011
2. Selenocysteine Is Selectively Taken Up by Red Blood Cells;Bioscience, Biotechnology, and Biochemistry;2009-12-23
3. Energy Coupling in Chloroplasts: A Calcium-Gated Switch Controls Proton Fluxes between Localized and Delocalized Proton Gradients;Current Topics in Bioenergetics;1991
4. Electron Transport between Photosystem II and Photosystem I;Current Topics in Bioenergetics;1991
5. ATP formation onset lag and post-illumination phosphorylation initiated with single-turnover flashes. I. An assay using luciferin-luciferase luminescence;Journal of Bioenergetics and Biomembranes;1988-02
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