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1.
J Org Chem ; 79(7): 2864-73, 2014 Apr 04.
Article in English | MEDLINE | ID: mdl-24606167

ABSTRACT

The biosynthesis of lupeol-3-(3'R-hydroxy)-stearate (procrim b, 1) was investigated in the Mexican medicinal plant Pentalinon andrieuxii by (13)CO2 pulse-chase experiments. NMR analyses revealed positional enrichments of (13)C2-isotopologues in both the triterpenoid and the hydroxystearate moieties of 1. Five of the six isoprene units reflected a pattern with [1,2-(13)C2]- and [3,5-(13)C2]-isotopologues from the respective C5-precursors, IPP and DMAPP, whereas one isoprene unit in the ring E of 1 showed only the [3,5-(13)C2]-connectivity of the original C5-precursor, due to rearrangement of the dammarenyl cation intermediate during the cyclization process. The presence of (13)C2-isotopologues was indicative of [(13)C2]acetyl-CoA being the precursor units in the formation of the fatty acid moiety and of the triterpene via the mevalonate route. The observed labeling pattern was in agreement with a chair-chair-chair-boat conformation of the (S)-2,3-oxidosqualene precursor during the cyclization process, suggesting that the lupeol synthase from P. andrieuxii is of the same type as that from Olea europea and Taraxacum officinale, but different from that of Arabidopsis thaliana. The study shows that (13)CO2 pulse-chase experiments are powerful in elucidating, under in vivo conditions and in a single experiment, the biosynthesis of complex plant products including higher terpenes.


Subject(s)
Carbon Isotopes/chemistry , Intramolecular Transferases/chemistry , Olea/chemistry , Pentacyclic Triterpenes/biosynthesis , Pentacyclic Triterpenes/chemistry , Pentacyclic Triterpenes/chemical synthesis , Squalene/analogs & derivatives , Squalene/chemistry , Stearates/chemical synthesis , Taraxacum/chemistry , Triterpenes/chemical synthesis , Amino Acid Sequence , Cyclization , Magnetic Resonance Spectroscopy , Squalene/chemical synthesis , Stearates/chemistry , Triterpenes/chemistry
2.
Molecules ; 18(7): 7686-98, 2013 Jul 02.
Article in English | MEDLINE | ID: mdl-23884121

ABSTRACT

The natural formation of the bioactive C17-polyacetylenes (-)-(R)-panaxynol and panaxydol was analyzed by 13C-labeling experiments. For this purpose, plants of Panax ginseng were supplied with 13CO2 under field conditions or, alternatively, sterile root cultures of P. ginseng were supplemented with [U-13C6]glucose. The polyynes were isolated from the labeled roots or hairy root cultures, respectively, and analyzed by quantitative NMR spectroscopy. The same mixtures of eight doubly 13C-labeled isotopologues and one single labeled isotopologue were observed in the C17-polyacetylenes obtained from the two experiments. The polyketide-type labeling pattern is in line with the biosynthetic origin of the compounds via decarboxylation of fatty acids, probably of crepenynic acid. The 13C-study now provides experimental evidence for the biosynthesis of panaxynol and related polyacetylenes in P. ginseng under in planta conditions as well as in root cultures. The data also show that 13CO2 experiments under field conditions are useful to elucidate the biosynthetic pathways of metabolites, including those from roots.


Subject(s)
Diynes/chemistry , Fatty Alcohols/chemistry , Panax/chemistry , Carbon Isotopes/chemistry , Chromatography, High Pressure Liquid , Diynes/metabolism , Fatty Alcohols/metabolism , Magnetic Resonance Spectroscopy , Panax/metabolism , Plant Roots/chemistry , Plant Roots/metabolism , Polyynes/chemistry
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