P. Dorlet et al., Multifrequency high-field EPR study of the interaction between the tyrosylZ radical and the manganese cluster in plant photosystem II, J PHYS CH B, 103(49), 1999, pp. 10945-10954
The light-driven oxidation of water to dioxygen is catalyzed by the enzyme
photosystem II. A four-manganese ion cluster and a tyrosine, Y-Z, are prese
nt in the catalytic site. In preparations inhibited by addition of acetate
or removal of the calcium cofactor, it is possible to trap, the tyrosyl rad
ical in interaction with the metal cluster. The coupled species is characte
rized by a broad split EPR signal at 9 GHz. In this work, high-field EPR ha
s been used for further characterization of the coupling. The 285, 190 and
95 GHz EPR spectra of the interacting system are reported. Analysis of thes
e spectra yielded exchange and dipolar couplings of the same magnitude as t
hose found with 9 GHz EPR. However, the high-field spectra show that the co
upling between the radical and the manganese cluster has opposite sign in a
cetate-treated compared to calcium-depleted samples. The sign difference in
dicates differences in the electronic structure of the radical-metal center
pair. Comparisons are made between photosystem II and other enzymes contai
ning radicals interacting with metal centers. Possible explanations for the
difference in sign are proposed. The difficulty in obtaining reliable stru
ctural information for the spin coupled system is addressed.