2013
Spectral Tuning of Ultraviolet Cone Pigments: An Interhelical Lock Mechanism
Sekharan S, Mooney V, Rivalta I, Kazmi M, Neitz M, Neitz J, Sakmar T, Yan E, Batista V. Spectral Tuning of Ultraviolet Cone Pigments: An Interhelical Lock Mechanism. Journal Of The American Chemical Society 2013, 135: 19064-19067. PMID: 24295328, PMCID: PMC4536979, DOI: 10.1021/ja409896y.Peer-Reviewed Original ResearchConceptsUV pigmentsCone pigmentsSpectral tuningActivation of rhodopsinAncestral pigmentMolecular evolutionVertebrate visionMutagenesis studiesPhotoreceptor rhodopsinMolecular levelStructural rearrangementsUnprotonated Schiff baseTransmembraneTM6PigmentsRhodopsinMutationsEssential componentRetinyl chromophoreHydrogen bonding networkMutantsTM2Structural modelPhysiologicalRearrangement
2008
A Model of the Oxygen-Evolving Center of Photosystem II Predicted by Structural Refinement Based on EXAFS Simulations
Sproviero EM, Gascón JA, McEvoy JP, Brudvig GW, Batista VS. A Model of the Oxygen-Evolving Center of Photosystem II Predicted by Structural Refinement Based on EXAFS Simulations. Journal Of The American Chemical Society 2008, 130: 6728-6730. PMID: 18457397, PMCID: PMC2678715, DOI: 10.1021/ja801979n.Peer-Reviewed Original ResearchConceptsOxygen-evolving complexSpectroscopic dataPhotosystem IIOxygen-Evolving CenterIntermediate oxidation statesHigh-resolution spectroscopic dataOxidation stateCatalytic cycleMetal clustersEXAFS simulationsPolarized EXAFSXRD modelStructural refinementEXAFSComputational structural modelsSingle crystalsStructural modelDanglerAmino acidsIonsComplexesCrystalsMnAcidStructure