| Literature DB >> 26646210 |
Yoshitsugu Morita1, Koji Oohora2, Akiyoshi Sawada3, Kazuki Doitomi3, Jun Ohbayashi1, Takashi Kamachi3, Kazunari Yoshizawa4, Yoshio Hisaeda5, Takashi Hayashi1.
Abstract
Myoglobin reconstituted with a cobalt tetradehydrocorrin derivative, rMb(Co(TDHC)), was investigated as a hybrid model to replicate the reaction catalyzed by methionine synthase. In the heme pocket, Co(I)(TDHC) is found to react with methyl iodide to form the methylated cobalt complex, CH3-Co(III)(TDHC), although it is known that a similar nucleophilic reaction of a cobalt(i) tetradehydrocorrin complex does not proceed effectively in organic solvents. Furthermore, we observed a residue- and regio-selective transmethylation from the CH3-Co(III)(TDHC) species to the Nε2 atom of the His64 imidazole ring in myoglobin at 25 °C over a period of 48 h. These findings indicate that the protein matrix promotes the model reaction of methionine synthase via the methylated cobalt complex. A theoretical calculation provides support for a plausible reaction mechanism wherein the axial histidine ligation stabilizes the methylated cobalt complex and subsequent histidine-flipping induces the transmethylation via heterolytic cleavage of the Co-CH3 bond in the hybrid model.Entities:
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Year: 2016 PMID: 26646210 DOI: 10.1039/c5dt04109k
Source DB: PubMed Journal: Dalton Trans ISSN: 1477-9226 Impact factor: 4.390