Inhibition of oxygen evolution by zaluzanin C |
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Authors: | B. Lotina-Hennsen E. Bernal-Morales A. Roo De Vivar A. L. Perez-C A. Castro-R M. Aguilar-Martinez |
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Affiliation: | (1) Departmento de Bioquímica, Facultad de Quùmica, Universidad National Autönoma de Mêxico Ciudad Universitaria, 04510 Mêxico, D. F.;(2) Instituto de Química, Universidad National Autönoma de Mêxico Ciudad Universitaria, 04510 Mêxico, D. F.;(3) Departmento de Fisicoquaica, Facultad de Química, Universidad National Autönoma de Mêxico Ciudad Universitaria, 04510 Mêxico, D. F. |
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Abstract: | The inhibition of ATP synthesis, proton uptake, and electron transport (basal, phosphorylating, and uncoupled) from water to methylviologen by zaluzanin C indicates that it acts as an electron transport inhibitor. Uncoupled photosystem I electron transport rate was not affected by zaluzanin C; however, uncoupled photosystem II electron flow from water to 2,3,5,6-tetramethyl phenylenediamine and from water to silicomolybdate was inhibited, but electron transport from diphenylcarbazide to silicomolybdate was not affected. We conclude that the site of inhibition by zaluzanin C is located at the oxygen evolution level. |
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Keywords: | Zaluzanin C Zaluzania triloba chloroplast oxygen evolution inhibition Hill reaction photosystem I photosystem II |
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