TY - JOUR
T1 - Theoretical illumination of water-inserted structures of the CaMn 4O5 cluster in the S2 and S3 states of oxygen-evolving complex of photosystem II
T2 - Full geometry optimizations by B3LYP hybrid density functional
AU - Isobe, H.
AU - Shoji, M.
AU - Yamanaka, S.
AU - Umena, Yasufumi
AU - Kawakami, K.
AU - Kamiya, N.
AU - Shen, J. R.
AU - Yamaguchi, K.
PY - 2012/11/28
Y1 - 2012/11/28
N2 - Full geometry optimizations of several inorganic model clusters, CaMn 4O4XYZ(H2O)2 (X, Y, Z = H 2O, OH- or O2-), by the use of the B3LYP hybrid density functional theory (DFT) have been performed to illuminate plausible molecular structures of the catalytic site for water oxidation in the S 0, S1, S2 and S3 states of the Kok cycle for the oxygen-evolving complex (OEC) of photosystem II (PSII). Optimized geometries obtained by the energy gradient method have revealed the degree of symmetry breaking of the unstable three-center Mna-X-Mnd bond in CaMn4O4XYZ(H2O)2. The right-elongated (R) Mna-X⋯Mnd and left-elongated (L) Mna⋯X-Mnd structures appear to occupy local minima on a double-well potential for several key intermediates in these states. The effects of insertion of one extra water molecule to the vacant coordination site, Mnd (Mna), for R (L) structures have also been examined in detail. The greater stability of the L-type structure over the R-type has been concluded for key intermediates in the S2 and S 3 states. Implications of the present DFT structures are discussed in relation to previous DFT and related results, together with recent X-ray diffraction results for model compounds of cubane-like OEC cluster of PSII.
AB - Full geometry optimizations of several inorganic model clusters, CaMn 4O4XYZ(H2O)2 (X, Y, Z = H 2O, OH- or O2-), by the use of the B3LYP hybrid density functional theory (DFT) have been performed to illuminate plausible molecular structures of the catalytic site for water oxidation in the S 0, S1, S2 and S3 states of the Kok cycle for the oxygen-evolving complex (OEC) of photosystem II (PSII). Optimized geometries obtained by the energy gradient method have revealed the degree of symmetry breaking of the unstable three-center Mna-X-Mnd bond in CaMn4O4XYZ(H2O)2. The right-elongated (R) Mna-X⋯Mnd and left-elongated (L) Mna⋯X-Mnd structures appear to occupy local minima on a double-well potential for several key intermediates in these states. The effects of insertion of one extra water molecule to the vacant coordination site, Mnd (Mna), for R (L) structures have also been examined in detail. The greater stability of the L-type structure over the R-type has been concluded for key intermediates in the S2 and S 3 states. Implications of the present DFT structures are discussed in relation to previous DFT and related results, together with recent X-ray diffraction results for model compounds of cubane-like OEC cluster of PSII.
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U2 - 10.1039/c2dt31420g
DO - 10.1039/c2dt31420g
M3 - Article
C2 - 23037319
AN - SCOPUS:84870899676
SN - 1477-9226
VL - 41
SP - 13727
EP - 13740
JO - Dalton Transactions
JF - Dalton Transactions
IS - 44
ER -