A hydrogen-atom abstraction model for the function of Y-Z in photosynthetic oxygen evolution

被引:208
作者
Hoganson, CW
LydakisSimantiris, N
Tang, XS
Tommos, C
Warncke, K
Babcock, GT
Diner, BA
McCracken, J
Styring, S
机构
[1] DUPONT CO INC,EXPTL STN,DEPT CENT RES & DEV,WILMINGTON,DE 19880
[2] UNIV STOCKHOLM,ARRHENIUS LABS NAT SCI,DEPT BIOCHEM,S-10691 STOCKHOLM,SWEDEN
[3] UNIV CRETE,DEPT CHEM,GR-71409 CRETE,GREECE
关键词
electron paramagnetic resonance; manganese cluster; oxygen evolution; oxygen evolving complex; Photosystem II; proton transfer; tyrosine radical; water oxidation;
D O I
10.1007/BF00020428
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Recent magnetic-resonance work on Y-Z suggests that this species exhibits considerable motional flexibility in its functional site and that its phenol oxygen is not involved in a well-ordered hydrogen-bond interaction (Tang et al., submitted; Tommos et al., in press). Both of these observations are inconsistent with a simple electron-transfer function for this radical in photosynthetic water oxidation. By considering the roles of catalytically active amino acid radicals in other enzymes and recent data on the water-oxidation process in Photosystem II, we rationalize these observations by suggesting that Y-Z functions to abstract hydrogen atoms from aquo- and hydroxy-bound manganese ions in the (Mn)(4) cluster on each S-state transition. The hydrogen-atom abstraction process may occur either by sequential or concerted kinetic pathways. Within this model, the (Mn)(4)/Y-Z center forms a single catalytic center that comprises the Oxygen Evolving Complex in Photosystem II.
引用
收藏
页码:177 / 184
页数:8
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