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A theoretical study on effect of the initial redox state of cytochrome b559 on maximal chlorophyll fluorescence level (F(M)): implications for photoinhibition of photosystem II
Authors:Lazár Dusan  Ilík Petr  Kruk Jerzy  Strza?ka Kazimierz  Naus Jan
Institution:Laboratory of Biophysics, Department of Experimental Physics, Faculty of Science, Palacky University, tr. Svobody 26, 771 46 Olomouc, Czech Republic. lazard@seznam.cz
Abstract:In this work, we extended the reversible radical pair model which describes energy utilization and electron transfer up to the first quinone electron acceptor (Q(A)) in photosystem II (PSII), by redox reactions involving cytochrome (cyt) b559. In the model, cyt b559 accepts electrons from the reduced primary electron acceptor in PSII, pheophytin, and donates electrons to the oxidized primary electron donor in PSII (P680+). Theoretical simulations of chlorophyll fluorescence rise based on the model show that the maximal fluorescence, F(M), increases with an increasing amount of initially reduced cyt b559. In this work we applied, the first to our knowledge, metabolic control analysis (MCA) to a model of reactions in PSII. The MCA was used to determine to what extent the reactions occurring in the model control the F(M) level and how this control depends on the initial redox state of cyt b559. The simulations also revealed that increasing the amount of initially reduced cyt b559 could protect PSII against photoinhibition. Also experimental data, which might be used to validate our theory, are presented and discussed.
Keywords:Cyt  cytochrome  DCMU  3-(3′  4′-dichlorophenyl)-1  1-dimethylurea  F0  minimal fluorescence  FM  maximal fluorescence  FV/FM  maximal quantum yield of photosystem II photochemistry  FLR  fluorescence rise  HP  high potential  LP  low potential  MCA  metabolic control analysis  OEC  oxygen evolving complex  P680  primary electron donor in photosystem II  Pheo  (pheophytin) primary electron acceptor in photosystem II  PQ  plastoquinone  PSII  photosystem II  QA  the first quinone electron acceptor in photosystem II  QB  the second quinone electron acceptor in photosystem II  RCII  reaction centre of photosystem II  RRP  reversible radical pair  3P680  triplet state of primary electron donor in photosystem II
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