THEORETICAL-STUDY OF THE MULTILINE EPR SIGNAL FROM THE S2 STATE OF THE OXYGEN EVOLVING COMPLEX OF PHOTOSYSTEM-II - EVIDENCE FOR A MAGNETIC TETRAMER

被引:56
作者
BONVOISIN, J
BLONDIN, G
GIRERD, JJ
ZIMMERMANN, JL
机构
[1] CENS,DEPT BIOL CELLULAIRE & MOLEC,BIOENERGET SECT,F-91191 GIF SUR YVETTE,FRANCE
[2] CTR ELABORAT MAT & ETUD STRUCT,OPT ELECTR LAB,CNRS,UPR A8011,F-31055 TOULOUSE,FRANCE
[3] UNIV CALIF BERKELEY,BERKELEY,CA 94720
[4] UNIV PARIS 11,INST CHIM MOLEC ORSAY,CHIM INORGAN LAB,CNRS,URA 420,F-91405 ORSAY,FRANCE
关键词
D O I
10.1016/S0006-3495(92)81917-3
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The Oxygen evolving complex of plant photosystem 11 is made of a manganese cluster that gives rise to a low temperature EPR multiline signal in the S2 oxidation state. The origin of this EPR signal has been addressed with respect to the question of the magnetic couplings between the electron and nuclear spins of the four possible Mn ions that make up this complex. Considering Mn(III) and Mn(IV) as the only possible oxidation states present in the S2 state, and no large anisotropy of the magnetic tensors, the breadths of the EPR spectra calculated for dimers and trimers with S = 1/2 have been compared with that of the biological site. It is concluded that neither a dinuclear nor a trinuclear complex made of Mn(III) and Mn(IV) can be responsible for the multiline signal; but that, by contrast, a tetranuclear Mn complex can be the origin of this signal. The general shape of the experimental spectrum, its particular hyperfine pattern, the positions of most of the hyperfine lines and their relative intensities can be fit by a tetramer model described by the following six fitting parameters: g almost-equal-to 1.987, A1 almost-equal-to 122.4 10(-4) cm-1, A2 almost-equal-to 87.2 10(-4) CM-1, A3 almost-equal-to 81.6 10(-4) cm-1, A4 almost-equal-to 19.1 10(-4) cm-1 and delta-H = 24.5 G. A second model described by parameters very close to those given above except for A4 almost-equal-to 77.5 10(-4) CM-1 gives an equally good fit. However, no other set of parameters gives an EPR spectrum that reproduces the hyperfine pattern of the S2 multiline signal. This demonstrates that in the S2 State of the oxygen evolving complex, the four manganese ions are organized in a magnetic tetramer.
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页码:1076 / 1086
页数:11
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