Gliszczyńska Anna, Gładkowski Witold, Dancewicz Katarzyna, Gabryś Beata
Department of Chemistry, Wrocław University of Environmental and Life Sciences, Norwida 25, 50-375, Wrocław, Poland,
Curr Microbiol. 2015 Jul;71(1):83-94. doi: 10.1007/s00284-015-0831-9. Epub 2015 May 10.
Microbial transformations of two natural compounds dihydrojasmone (1) and cis-jasmone (3) in the growing cultures of selected twenty strains have been investigated. The studies have demonstrated a biocatalytic potential of tested microorganisms for the enantioselective hydroxylation of jasmonates. The substrates underwent an effective regio- and stero-selective hydroxylation at the allylic position in the cyclopentenone ring, and the corresponding optically pure keto-alcohols (2, 4) were obtained. The process of biohydroxylation depended on the composition of reaction medium. In the studied cultures, (+)-(R)-4-hydroxydihydrojasmone (2) and (+) and (-)-4-hydroxyjasmone (4a, 4b) were produced in good yields and high enantiomeric excesses. Moreover, the introduction of the hydroxy group into the molecule of jasmonate ketones 1 and 3 leads to biologically active derivatives 2 and 4 that regulate the behaviour of aphids Myzus persicae by termination of their feeding.
已对选定的20株菌株生长培养物中两种天然化合物二氢茉莉酮(1)和顺式茉莉酮(3)的微生物转化进行了研究。研究表明,受试微生物对茉莉酸酯的对映选择性羟基化具有生物催化潜力。底物在环戊烯酮环的烯丙基位置进行了有效的区域和立体选择性羟基化反应,得到了相应的光学纯酮醇(2,4)。生物羟基化过程取决于反应介质的组成。在所研究的培养物中,(+)-(R)-4-羟基二氢茉莉酮(2)以及(+)和(-)-4-羟基茉莉酮(4a,4b)以良好的产率和高对映体过量生成。此外,将羟基引入茉莉酮酮1和3的分子中会产生生物活性衍生物2和4,它们通过终止蚜虫桃蚜的取食来调节其行为。