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Regioselectivity of Cobalamin-Dependent Methyltransferase Can Be Tuned by Reaction Conditions and Substrate.


ABSTRACT: Regioselective reactions represent a significant challenge for organic chemistry. Here the regioselective methylation of a single hydroxy group of 4-substituted catechols was investigated employing the cobalamin-dependent methyltransferase from Desulfitobacterium hafniense. Catechols substituted in position four were methylated either in meta- or para-position to the substituent depending whether the substituent was polar or apolar. While the biocatalytic cobalamin dependent methylation was meta-selective with 4-substituted catechols bearing hydrophilic groups, it was para-selective for hydrophobic substituents. Furthermore, the presence of water miscible co-solvents had a clear improving influence, whereby THF turned out to enable the formation of a single regioisomer in selected cases. Finally, it was found that also the pH led to an enhancement of regioselectivity for the cases investigated.

SUBMITTER: Pompei S 

PROVIDER: S-EPMC7783988 | biostudies-literature | 2020 Dec

REPOSITORIES: biostudies-literature

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Regioselectivity of Cobalamin-Dependent Methyltransferase Can Be Tuned by Reaction Conditions and Substrate.

Pompei Simona S   Grimm Christopher C   Farnberger Judith E JE   Schober Lukas L   Kroutil Wolfgang W  

ChemCatChem 20201001 23


Regioselective reactions represent a significant challenge for organic chemistry. Here the regioselective methylation of a single hydroxy group of 4-substituted catechols was investigated employing the cobalamin-dependent methyltransferase from <i>Desulfitobacterium hafniense</i>. Catechols substituted in position four were methylated either in <i>meta</i>- or <i>para</i>-position to the substituent depending whether the substituent was polar or apolar. While the biocatalytic cobalamin dependent  ...[more]

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