CYCLIZATION OF NATURAL ALLENE OXIDE FATTY-ACIDS - THE ANCHIMERIC ASSISTANCE OF BETA,GAMMA-DOUBLE BOND BESIDE THE OXIRANE AND THE REACTION-MECHANISM

Authors
Citation
An. Grechkin, CYCLIZATION OF NATURAL ALLENE OXIDE FATTY-ACIDS - THE ANCHIMERIC ASSISTANCE OF BETA,GAMMA-DOUBLE BOND BESIDE THE OXIRANE AND THE REACTION-MECHANISM, Biochimica et biophysica acta, L. Lipids and lipid metabolism, 1213(2), 1994, pp. 199-206
Citations number
33
Categorie Soggetti
Biology,Biophysics
ISSN journal
00052760
Volume
1213
Issue
2
Year of publication
1994
Pages
199 - 206
Database
ISI
SICI code
0005-2760(1994)1213:2<199:CONAOF>2.0.ZU;2-A
Abstract
Formation of cyclopentenones was followed from linoleic, alpha-linolen ic and gamma-linolenic acid hydroperoxides (HPOD, HPOT(alpha) and HPOT (gamma), respectively) via allene oxides in the presence of flax seed allene oxide synthase. Although 13-HPOT(alpha) and 9-HPOT(gamma) were effective cyclopentenone precursors, 13-HPOD, 9-HPOD(gamma) and 9-HPOT (alpha) were not. These results suggest that the presence of a double bond in beta,gamma-position toward the hydroperoxide function causes t he strong effect of anchimeric assistance, increasing the cyclization rate by 2-3 orders of magnitude. The minor 15(E) isomer was formed fro m 13-HPOT along with usual 12-oxo-10,15(Z)-phytodienoic acid (12-oxo-P DA). The remarkable (about 2-fold) suppression of 12-oxo-PDA formation was observed under acidic (pH 5.5) conditions in comparison to the al kaline (pH 7.8) ones. The mechanism of double bond-assisted allene oxi de cyclization, comprising dipolar pericyclic ring closure in zwitteri onic intermediate, is proposed.