2010
DOI: 10.1002/qua.22918
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Theory of chemical bonds in metalloenzymes. XIV. Correspondence between magnetic coupling mode and radical coupling mechanism in hydroxylations with methane monooxygenase and related species

Abstract: Broken-symmetry (BS) and approximate spin-projected (AP) BS hybrid density functional theory (DFT) calculations were performed to elucidate possible mechanisms of hydroxylation reactions of methane and alkanes with soluble methane monooxygenase (sMMO) and related metalloenzymes. The BS HDFT (UB3LYP) method was employed to elucidate electronic and spin structures of the key intermediate ''Q'' and to locate transition structures for hydroxylation reactions in the lowest-spin (LS) singlet and the highest-spin (HS… Show more

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Cited by 14 publications
(12 citation statements)
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References 149 publications
(655 reference statements)
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“…Although there is no significant difference between the structures in the HS-FM and HS-AF states, the structure in the IS state is different from that in the HS state in the coordination mode of Glu114. The Fe£Fe distances in the HS-FM, HS-AF, and IS-AF states are 2.70, 2.69, and 2.68 ¡, respectively, longer than those of the EXAFS study 32 by about 0.2 ¡, but close to the distance in the synthetic complex and those calculated by our group, 218 Siegbahn, 146 and Yamaguchi et al 219 In all the studied spin states, two of the FeO distances in the diamond core are short, and the other two are long, in good agreement with the EXAFS measurements. 32 The free energy gap between the HS-FM and HS-AF states for Model 1H is small, 0.4 (0.9 and 2.7) kcal mol ¹1 at the B3LYP (B3LYP* and OPBE) level.…”
Section: Possible Models Of Intermediate Q Siegbahn 142147supporting
confidence: 78%
“…Although there is no significant difference between the structures in the HS-FM and HS-AF states, the structure in the IS state is different from that in the HS state in the coordination mode of Glu114. The Fe£Fe distances in the HS-FM, HS-AF, and IS-AF states are 2.70, 2.69, and 2.68 ¡, respectively, longer than those of the EXAFS study 32 by about 0.2 ¡, but close to the distance in the synthetic complex and those calculated by our group, 218 Siegbahn, 146 and Yamaguchi et al 219 In all the studied spin states, two of the FeO distances in the diamond core are short, and the other two are long, in good agreement with the EXAFS measurements. 32 The free energy gap between the HS-FM and HS-AF states for Model 1H is small, 0.4 (0.9 and 2.7) kcal mol ¹1 at the B3LYP (B3LYP* and OPBE) level.…”
Section: Possible Models Of Intermediate Q Siegbahn 142147supporting
confidence: 78%
“…The carbonyl groups of Asp189 and one water molecule are coordinated to Ca(II) ion in Va, while two water molecules are coordinated to Ca(II) ion in VIa. VIa can also be reduced to the Berlin (Loll) structure (IVa) [29] and to the London structure (IIIa) [27] by removing the O 4 and O 5 atoms, respectively.…”
Section: Symmetry Breaking By Substitution Of Mn Ion With Ca(ii) Ion mentioning
confidence: 99%
“…In fact, the broken-symmetry density functional theory (BS DFT) calculations followed by the natural orbital analysis have elucidated that the OAO bond formation processes are qualitatively described by the superposition of these extreme VB configurations as U BS-Cl ¼ C 1 w 1 (DR) þ C 2 w 2 (ZW), where C i means a linear combination coefficient of the BS configuration responsible for the extreme diradical (DR) or zwitterion (ZW) electronic structure. As shown in the previous papers [3,4], the weight of DR or ZW is highly dependent on environmental conditions such as hydrogen bonding. The DR character of the Mn¼ ¼O bond can be variable as illustrated in Scheme S1A, Supporting Information, showing that the environmental conditions heavily affect the reactivity.…”
mentioning
confidence: 95%
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