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Photochemistry and Photobiology|January 1, 1993
The role of redox-active amino acids in the photosynthetic water-oxidizing complexB A BarryBiophysical Journal|October 1, 1996
Electron paramagnetic resonance characterization of tyrosine radical, M+, in site-directed mutants of photosystem II(t)C Ma, B A BarryBiochemistry|September 30, 1998
Vibrational spectrum associated with the reduction of tyrosyl radical D* in photosystem II: a comparative biochemical and kinetic studyS Kim, B A BarryBiophysical Journal|May 20, 1998
The protein environment surrounding tyrosyl radicals D. and Z. in photosystem II: a difference Fourier-transform infrared spectroscopic studyS Kim, B A BarryBiochemistry|October 13, 1992
Difference FT-IR study of a novel biochemical preparation of photosystem IIG M MacDonald, B A BarryThe Journal of Biological Chemistry|August 15, 1993
Isotopic labeling and EPR spectroscopy show that a tyrosine residue is the terminal electron donor, Z, in manganese-depleted photosystem II preparationsR J Boerner, B A BarryProceedings of the National Academy of Sciences of the United States of America|October 1, 1987
Tyrosine radicals are involved in the photosynthetic oxygen-evolving systemB A Barry, G T BabcockBiochemistry|June 18, 1996
Pigment quantitation and analysis by HPLC reverse phase chromatography: a characterization of antenna size in oxygen-evolving photosystem II preparations from cyanobacteria and plantsJ S Patzlaff, B A BarryThe Journal of Biological Chemistry|January 7, 1994
EPR evidence that the M+ radical, which is observed in three site-directed mutants of photosystem II, is a tyrosine radicalR J Boerner, B A BarryBiochemistry|April 7, 1992
The YF161D1 mutant of Synechocystis 6803 exhibits an EPR signal from a light-induced photosystem II radicalG H Noren, B A BarryPageof 4