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Photosynthesis Research | 1995

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

Curtis W. Hoganson; Nikos Lydakis-Simantiris; Xiao-Song Tang; Cecilia Tommos; Kurt Warncke; Gerald T. Babcock; Bruce A. Diner; John McCracken; Stenbjörn Styring

Recent magnetic-resonance work on YŻ 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 YŻ functions to abstract hydrogen atoms from aquo- and hydroxy-bound managanese 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/YZ center forms a single catalytic center that comprises the Oxygen Evolving Complex in Photosystem II.


Journal of the American Chemical Society | 1995

Spin-Density Distribution, Conformation, and Hydrogen Bonding of the Redox-Active Tyrosine YZ in Photosystem II from Multiple-Electron Magnetic-Resonance Spectroscopies: Implications for Photosynthetic Oxygen Evolution

Cecilia Tommos; Xiao-Song Tang; Kurt Warncke; Curtis W. Hoganson; Stenbjoern Styring; John McCracken; Bruce A. Diner; Gerald T. Babcock


Biochemistry | 1994

Biochemical and Spectroscopic Characterization of a New Oxygen-Evolving Photosystem II Core Complex from the Cyanobacterium Synechocystis PCC 6803

Xiao-Song Tang; Bruce A. Diner


Biochemistry | 1993

Spectroscopic evidence from site-directed mutants of Synechocystis PCC6803 in favor of a close interaction between histidine 189 and redox-active tyrosine 160, both of polypeptide D2 of the photosystem II reaction center

Xiao-Song Tang; Dexter A. Chisholm; G. C. Dismukes; Gary W. Brudvig; Bruce A. Diner


Journal of the American Chemical Society | 1996

MANGANESE-TYROSINE INTERACTION IN THE PHOTOSYSTEM II OXYGEN-EVOLVING COMPLEX

Xiao-Song Tang; David W. Randall; Dee Ann Force; Bruce A. Diner; R. David Britt


Biochemistry | 1996

245 GHZ HIGH-FIELD EPR STUDY OF TYROSINE-D AND TYROSINE-Z IN MUTANTS OF PHOTOSYSTEM II

Sun Un; Xiao-Song Tang; Bruce A. Diner


Journal of the American Chemical Society | 1997

The τ-Nitrogen of D2 Histidine 189 is the Hydrogen Bond Donor to the Tyrosine Radical YD• of Photosystem II

Kristy A. Campbell; Jeffrey M. Peloquin; Bruce A. Diner; Xiao-Song Tang; and Dexter A. Chisholm; R. David Britt


Biochemistry | 1996

Investigation of the differences in the local protein environments surrounding tyrosine radicals YZ. and YD. in photosystem II using wild-type and the D2-Tyr160Phe mutant of Synechocystis 6803.

Xiao-Song Tang; Ming Zheng; Dexter A. Chisholm; G. C. Dismukes; Bruce A. Diner


Journal of the American Chemical Society | 1995

2H ESE-ENDOR study of hydrogen bonding to the tyrosine radicals YD.bullet. and YZ.bullet. of photosystem II.

Dee Ann Force; David W. Randall; R. David Britt; Xiao-Song Tang; Bruce A. Diner


Biochemistry | 1995

SPECTROSCOPIC EVIDENCE FOR THE SYMMETRIC LOCATION OF TYROSINES D AND Z IN PHOTOSYSTEM II

Dionysios Koulougliotis; Xiao-Song Tang; Bruce A. Diner; Gary W. Brudvig

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R. David Britt

University of California

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Dee Ann Force

University of California

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John McCracken

Michigan State University

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Cecilia Tommos

University of Pennsylvania

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