Chemical and Pharmaceutical Bulletin
Online ISSN : 1347-5223
Print ISSN : 0009-2363
ISSN-L : 0009-2363
Studies on the Alkaloids of Papaveraceous Plants. XXV. Biosynthesis of the Alkaloids of Corydalis incisa PERS. and Chelidonium majus L. Incorporations of Tetrahydroprotoberberines, N-Methosalts of Tetrahydroprotoberberines, and Protopine
NARAO TAKAOKINUKO IWASAMIYOKO KAMIGAUCHIMAKIKO SUGIURA
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1976 Volume 24 Issue 11 Pages 2859-2868

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Abstract
Since dl-cheilanthifoline (2) was converted in Corydalis incisa plants into corynoline (3) and protopine (4), it was shown that 2 was the intermediate between scoulerine (15) and stylopine (10). Corycavine (9) was shown to be biosynthesized in Corydalis incisa plants from dl-mesotetrahydrocorysamine (7) and dl-tetrahydrocorysamine (8) via their α-N-methosalts (7α and 8α). Protopine (4) is shown to be formed in vivo from the α-N-methosalt of dl- or l-stylopine (10α). Incorporation of the β-N-methosalts (10β and 8β) into 4 and 9 might be absent or negligible. These results imply that α-N-methosalts of tetrahydroprotoberberines are stereospecifically converted into protopine-type alkaloids. Sanguinarine (13) and chelidonine (14) were shown to be biosynthesized in Chelidonium majus plants from α-N-methosalt of dl- or l-stylopine (10α) via protopine (4). This shows that protopine-type alkaloid is the intermediate between tetrahydroprotoberberine-type and benzo [c] phenanthridine-type alkaloids.
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© The Pharmaceutical Society of Japan
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