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Spectroscopic studies of the chlorophyll d containing photosystem I from the cyanobacterium, Acaryochloris marina
Authors:Matthias Schenderlein  James Barber  Eberhard Schlodder
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
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.
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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