Spectroscopic studies of the chlorophyll d containing photosystem I from the cyanobacterium, Acaryochloris marina |
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Authors: | Matthias Schenderlein James Barber Eberhard Schlodder |
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Affiliation: | a Max-Volmer-Laboratorium für Biophysikalische Chemie, Technische Universität Berlin, Strasse des 17. Juni 135, 10623 Berlin, Germany b Division of Molecular Biosciences, Imperial College London, Biochemistry Building, South Kensington Campus, London, SW7 2AZ, UK |
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Abstract: | Absorbance difference spectroscopy and redox titrations have been applied to investigate the properties of photosystem I from the chlorophyll d containing cyanobacterium Acaryochloris marina. At room temperature, the (P740+ − P740) and (FA/B− − FA/B) absorbance difference spectra were recorded in the range between 300 and 1000 nm while at cryogenic temperatures, (P740+A1− − P740A1) and (3P740 − P740) absorbance difference spectra have been measured. Spectroscopic and kinetic evidence is presented that the cofactors involved in the electron transfer from the reduced secondary electron acceptor, phylloquinone (A1−), to the terminal electron acceptor and their structural arrangement are virtually identical to those of chlorophyll a containing photosystem I. The oxidation potential of the primary electron donor P740 of photosystem I has been reinvestigated. We find a midpoint potential of 450 ± 10 mV in photosystem I-enriched membrane fractions as well as in thylakoids which is very similar to that found for P700 in chlorophyll a dominated organisms. In addition, the extinction difference coefficient for the oxidation of the primary donor has been determined and a value of 45,000 ± 4000 M− 1 cm− 1 at 740 nm was obtained. Based on this value the ratio of P740 to chlorophyll is calculated to be 1:~ 200 chlorophyll d in thylakoid membranes. The consequences of our findings for the energetics in photosystem I of A. marina are discussed as well as the pigment stoichiometry and spectral characteristics of P740. |
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Keywords: | A0, intermediary chlorophyll acceptor in PS I A1, primary quinone acceptor in PS I β-DM, n-dodecyl-β-maltoside Chl, chlorophyll Cyt, cytochrome FeS, iron-sulphur-cluster FX, FA, FB, three [4Fe-4S] clusters in PS I FeCy, ferricyanide MES, 2-(N-morpholino)ethanesulfonic acid MV, methyl viologen Pheo, pheophytin PMS, phenazine methosulphate PS I (II), photosystem I (II) PhQ, phylloquinone RT, room temperature TMPD, N,N,N&prime ,N&prime -tetramethyl-p-phenylenediamine dihydrochloride T&minus S, triplet-minus-singlet |
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