Sulfoxidation mechanism of vanadium bromoperoxidase from Ascophyllum nodosum - Evidence for direct oxygen transfer catalysis

Citation
Hb. Ten Brink et al., Sulfoxidation mechanism of vanadium bromoperoxidase from Ascophyllum nodosum - Evidence for direct oxygen transfer catalysis, EUR J BIOCH, 268(1), 2001, pp. 132-138
Citations number
41
Categorie Soggetti
Biochemistry & Biophysics
Journal title
EUROPEAN JOURNAL OF BIOCHEMISTRY
ISSN journal
00142956 → ACNP
Volume
268
Issue
1
Year of publication
2001
Pages
132 - 138
Database
ISI
SICI code
0014-2956(200101)268:1<132:SMOVBF>2.0.ZU;2-P
Abstract
We have previously shown that vanadium bromoperoxidase from Ascophyllum nod osum mediates production of the (R)-enantiomer of methyl phenyl sulfoxide w ith 91% enantiomeric excess. Investigation of the intrinsic selectivity of vanadium bromoperoxidase reveals that the enzyme catalyzes the sulfoxidatio n of methyl phenyl sulfide in a purely enantioselective manner. The K-m of the enzyme for methyl phenyl sulfide was determined to be approximate to 3. 5 mM in the presence of 25% methanol or tert-butanol, The selectivity of th e sulfoxidation of methyl phenyl sulfide is optimal in the temperature rang e 25-30 degreesC and can be further optimized by increasing the enzyme conc entration, yielding selectivities with up to 96% enantiomeric excess. Furth ermore, we established for the first time that vanadium bromoperoxidase is functional at temperatures up to 70 degreesC. A detailed investigation of t he sulfoxidation activity of this enzyme using O-18-labeled hydrogen peroxi de shows that vanadium bromoperoxidase mediates the direct transfer of the peroxide oxygen to the sulfide. A schematic model of the vanadium haloperox idase sulfoxidation mechanism is presented.