The First Direct Oxidative Conversion of a Selenol to a Stable Selenenic Acid:  Experimental Demonstration of Three Processes Included in the Catalytic Cycle of Glutathione Peroxidase

A stable selenenic acid was synthesized by direct oxidation of a selenol bearing a novel bowl-type substituent with H2O2, and its structure was established by X-ray crystallographic analysis. Selenenyl sulfides obtained by the reaction of the selenenic acid with 1,4-dithiols were reduced to the corr...

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Veröffentlicht in:Organic letters 2001-11, Vol.3 (22), p.3569-3572
Hauptverfasser: Goto, Kei, Nagahama, Michiko, Mizushima, Tadashi, Shimada, Keiichi, Kawashima, Takayuki, Okazaki, Renji
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Sprache:eng
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Zusammenfassung:A stable selenenic acid was synthesized by direct oxidation of a selenol bearing a novel bowl-type substituent with H2O2, and its structure was established by X-ray crystallographic analysis. Selenenyl sulfides obtained by the reaction of the selenenic acid with 1,4-dithiols were reduced to the corresponding selenol by treatment with a tertiary amine, thus achieving the experimental demonstration of three processes included in the catalytic cycle of glutathione peroxidase.
ISSN:1523-7060
1523-7052
DOI:10.1021/ol016682s