Physical Chemistry Chemical Physics · 2004 · 197 citations · 99 references
Detailed ArchitecturePhotorespirationPhotobiologyMolecular BiologyStructure-based MechanismCyanobacteriaRedox BiologyChemical EngineeringProtein X-ray CrystallographyArginine ResiduePhotocatalysisPhotosynthesisBiological Inorganic ChemistryBiophysicsBiochemistryPhotosystemsMechanistic PhotochemistryCyanobacterial Photosystem IiStructural BiologyNatural SciencesMedicine
The recently-published 3.5 Å resolution X-ray crystal structure of a cyanobacterial photosystem II (PDB entry 1S5L) provides a detailed architecture of the oxygen-evolving complex (OEC) and the surrounding amino-acids [K. N. Ferreira, T. M. Iverson, K. Maghlaoui, J. Barber and S. Iwata, Science, 2004, 203, 1831–1838]. The revealed geometry of the OEC lends weight to certain hypothesized mechanisms for water-splitting, including the one propounded by this group, in which a calcium-bound water acts as a nucleophile to attack the oxygen of a MnVO group in the crucial O–O bond-forming step [J. S. Vrettos, J. Limburg and G. W. Brudvig, Biochim. Biophys. Acta, 2001, 1503, 229–245]. Here we re-examine this mechanism in the light of the new crystallographic information and make detailed suggestions concerning the mechanistic functions (especially the redox and proton-transfer roles) of calcium, chloride and certain amino-acid residues in and around the OEC. In particular, we propose an important role for an arginine residue, CP43–Arg357, in abstracting protons from a substrate water molecule during the water-splitting reaction.
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Architecture of the Photosynthetic Oxygen-Evolving Center
Kristina N. Ferreira, T.M. Iverson, Karim Maghlaoui et al. · Science · 2004 · 3.3K citations
Crystal structure of photosystem II from Synechococcus elongatus at 3.8 Å resolution
Athina Zouni, H. T. Witt, Jan Kern et al. · Nature · 2001 · 1.9K citations