Enzymatic Sulfation of Phenolic Hydroxy Groups of Various Plant Metabolites by an Arylsulfotransferase

Authors
Publication date 2015
Journal European Journal of Organic Chemistry
Volume | Issue number 2015 | 3
Pages (from-to) 534-541
Organisations
  • Faculty of Science (FNWI) - Van 't Hoff Institute for Molecular Sciences (HIMS)
Abstract
The bacterial arylsulfate sulfotransferase (AST) from Desulfitobacterium hafniense was used as a catalytic tool to derivatize poorly sol. arom. compds. (polyphenols)​. As examples, we sulfated the natural occurring compds. p-​coumaric acid, 6-​hydroxyflavone, resveratrol, phloretin, and quercetin, using p-​nitrophenylsulfate as the sulfate donor. The water-​sol. sulfate esters were purified and characterized. Depending on the nature of the compd., one or more sulfate groups could be introduced in a stepwise order. The sulfation of resveratrol resulted in two different monosulfates (4'- and 3-​sulfates)​, the 3,​4'-​disulfate, and the 3,​5,​4'-​trisulfate. Sulfation of phloretin resulted in a monosulfate (4'-​sulfate) and a disulfate (4,​4'-​disulfate)​. Although quercetin has five hydroxy groups that could be sulfated, surprisingly this enzyme system primarily catalyzes the sulfation only at the 4' position. This simple enzymic one-​step sulfation method is easy to use, and it allows a convenient and simple prodn. of sulfated compds. with improved soly.
Document type Article
Note With supporting information
Language English
Published at https://doi.org/10.1002/ejoc.201402875
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