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Biochemistry|May 21, 1996
Cold-sensitive assembly of a mutant manganese-stabilizing protein caused by a Val to Ala replacementS D Betts, J R Ross, E Pichersky, et al.Plant Molecular Biology|October 1, 1994
Reconstitution of the spinach oxygen-evolving complex with recombinant Arabidopsis manganese-stabilizing proteinS D Betts, T M Hachigian, E Pichersky, et al.Biochemistry|April 1, 1997
Mutation Val235Ala weakens binding of the 33-kDa manganese stabilizing protein of photosystem II to one of two sitesS D Betts, J R Ross, E Pichersky, et al.Photosynthesis Research|January 16, 2014
Mn(2+) reduces Yz (+) in manganese-depleted Photosystem II preparationsC W Hoganson, D F Ghanotakis, G T Babcock, et al.Biochemistry|April 3, 1990
Characterization by electron microscopy of isolated particles and two-dimensional crystals of the CP47-D1-D2-cytochrome b-559 complex of photosystem IIJ P Dekker, S D Betts, C F Yocum, et al.Biochemistry|October 7, 1998
The carboxyl-terminal tripeptide of the manganese-stabilizing protein is required for quantitative assembly into photosystem II and for high rates of oxygen evolution activityS D Betts, N Lydakis-Simantiris, J R Ross, et al.Biochemistry|May 16, 1998
Conformational changes in the extrinsic manganese stabilizing protein can occur upon binding to the photosystem II reaction center: an isotope editing and FT-IR studyR S Hutchison, S D Betts, C F Yocum, et al.Plant Physiology|May 1, 1989
Evidence for a ferredoxin-dependent choline monooxygenase from spinach chloroplast stromaR Brouquisse, P Weigel, D Rhodes, et al.Biochimica Et Biophysica Acta|March 14, 2001
The oxidation state of the photosystem II manganese cluster influences the structure of manganese stabilizing proteinS K Hong, S A Pawlikowski, K A Vander Meulen, et al.Biochimica Et Biophysica Acta|June 13, 1996
Functional reconstitution of photosystem II with recombinant manganese-stabilizing proteins containing mutations that remove the disulfide bridgeS D Betts, J R Ross, K U Hall, et al.Pageof 5