FTIR spectra and normal-mode analysis of a tetranuclear manganese adamantane-like complex in two electrochemically prepared oxidation states: relevance to the oxygen-evolving complex of photosystem II

scientific article published on September 2002

FTIR spectra and normal-mode analysis of a tetranuclear manganese adamantane-like complex in two electrochemically prepared oxidation states: relevance to the oxygen-evolving complex of photosystem II is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1021/JA020409J
P932PMC publication ID3965206
P698PubMed publication ID12224948

P50authorVittal K YachandraQ93142624
Kenneth SauerQ110911166
P2093author name stringWilliam H Armstrong
Hendrik Visser
Christopher E Dubé
P2860cites workCrystal structure of photosystem II from Synechococcus elongatus at 3.8 A resolutionQ27629975
X-ray spectroscopy-based structure of the Mn cluster and mechanism of photosynthetic oxygen evolutionQ28140271
Mn K-edge XANES and Kbeta XES studies of two Mn-oxo binuclear complexes: investigation of three different oxidation states relevant to the oxygen-evolving complex of photosystem IIQ28344274
Probing the Mn oxidation states in the OEC. Insights from spectroscopic, computational and kinetic dataQ30620829
Low-frequency fourier transform infrared spectroscopy of the oxygen-evolving and quinone acceptor complexes in photosystem II.Q30668749
Vibrational spectroscopy of the oxygen-evolving complex and of manganese model compoundsQ31688880
Intermediates of a polynuclear manganese center involved in photosynthetic oxidation of waterQ33238756
X-ray Detection of the Period-Four Cycling of the Manganese Cluster in Photosynthetic Water Oxidizing EnzymeQ33296747
Towards understanding the chemistry of photosynthetic oxygen evolution: dynamic structural changes, redox states and substrate water binding of the Mn cluster in photosystem II.Q34044489
Cooperation of charges in photosynthetic O2 evolution-I. A linear four step mechanismQ34053836
Structural Change of the Mn Cluster during the S2→S3 State Transition of the Oxygen-Evolving Complex of Photosystem II. Does It Reflect the Onset of Water/Substrate Oxidation? Determination by Mn X-ray Absorption Spectroscopy.Q34068522
The tetra-manganese complex of photosystem II during its redox cycle - X-ray absorption results and mechanistic implications.Q34104145
EPR/ENDOR characterization of the physical and electronic structure of the OEC Mn clusterQ34104164
Photosynthetic water oxidation: towards a mechanismQ34104173
Oxygen ligand exchange at metal sites - implications for the O2 evolving mechanism of photosystem II.Q34104185
Photosynthetic water oxidation to molecular oxygen: apparatus and mechanismQ34104189
Mechanism of photosynthetic water oxidation: combining biophysical studies of photosystem II with inorganic model chemistryQ34104195
The S0 State of the Oxygen-Evolving Complex in Photosystem II Is Paramagnetic: Detection of an EPR Multiline SignalQ34165610
Detection of one slowly exchanging substrate water molecule in the S3 state of photosystem IIQ34423079
The manganese and calcium ions of photosynthetic oxygen evolutionQ35360136
A guide to electron paramagnetic resonance spectroscopy of Photosystem II membranesQ37155304
Molecular mechanism of water oxidation in photosynthesis based on the functioning of manganese in two different environmentsQ37533092
Comparison of the Manganese Cluster in Oxygen-Evolving Photosystem II with Distorted Cubane Manganese Compounds through X-ray Absorption SpectroscopyQ37649974
Oxidation states of the manganese cluster during the flash-induced S-state cycle of the photosynthetic oxygen-evolving complex.Q37651216
Absence of Mn-centered oxidation in the S(2) --> S(3) transition: implications for the mechanism of photosynthetic water oxidation.Q37663136
Mechanism of photosynthetic water oxidationQ38648037
Hypothesis. The molecular 'double-pivot' mechanism for water oxidation.Q39704542
D1-Asp170 is structurally coupled to the oxygen evolving complex in photosystem II as revealed by light-induced Fourier transform infrared difference spectroscopyQ43592666
Attenuated total reflection design for in situ FT-IR spectroelectrochemical studiesQ43746226
Manganese Cluster in Photosynthesis: Where Plants Oxidize Water to DioxygenQ46824692
Light-induced FTIR difference spectroscopy of the S(2)-to-S(3) state transition of the oxygen-evolving complex in Photosystem IIQ72999241
Identification of a Mn-O-Mn cluster vibrational mode of the oxygen-evolving complex in photosystem II by low-frequency FTIR spectroscopyQ73212810
Structure of an active water molecule in the water-oxidizing complex of photosystem II as studied by FTIR spectroscopyQ74347371
Kinetic determination of the fast exchanging substrate water molecule in the S3 state of photosystem IIQ77628687
X-ray absorption spectroscopy on layered photosystem II membrane particles suggests manganese-centered oxidation of the oxygen-evolving complex for the S0-S1, S1-S2, and S2-S3 transitions of the water oxidation cycleQ77710283
Alterations in carboxylate ligation at the active site of photosystem IIQ77754689
Structure of a histidine ligand in the photosynthetic oxygen-evolving complex as studied by light-induced fourier transform infrared difference spectroscopyQ78087971
Photosynthetic water oxidation: a simplex-scheme of its partial reactionsQ95297457
P433issue37
P407language of work or nameEnglishQ1860
P921main subjectelectrochemistryQ7877
photosystem IIQ22327014
P304page(s)11008-11017
P577publication date2002-09-01
P1433published inJournal of the American Chemical SocietyQ898902
P1476titleFTIR spectra and normal-mode analysis of a tetranuclear manganese adamantane-like complex in two electrochemically prepared oxidation states: relevance to the oxygen-evolving complex of photosystem II
P478volume124

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cites work (P2860)
Q36860121Fourier transform infrared difference spectroscopy for studying the molecular mechanism of photosynthetic water oxidation
Q44881134Impact of replacement of D1 C-terminal alanine with glycine on structure and function of photosynthetic oxygen-evolving complex
Q36728686Light-induced FTIR difference spectroscopy as a powerful tool toward understanding the molecular mechanism of photosynthetic oxygen evolution
Q36666412Protein Ligation of the Photosynthetic Oxygen-Evolving Center

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