Babiker H A, Sugimoto Y, Saisho T, Inanaga S, Hashimoto M, Isogai A
a Arid Land Research Center, Tottori University.
b Nitto Technical Information Center Co., Ltd.
Biosci Biotechnol Biochem. 1999;63(3):515-8. doi: 10.1271/bbb.63.515.
The biosynthetic relationship between acutumine 1 and dechloroacutumine 2 was studied using (13)C-labeled tyrosine and (3)H-labeled 2 as tracers. (13)C-NMR spectra of (13)C-labeled 1 and 2 showed that the alkaloids, each composed of two molecules of tyrosine, are derived from the same biosynthetic pathway. Feeding Menispermum dauricum (Menispermaceae) roots, cultured in a chloride-enriched medium, with (3)H-labeled 2 demonstrated that 1 is the only alkaloid metabolite of 2. Conversion (5%) of the exogenously applied 2, taken up by the roots, into 1 showed that 2 is the precursor of 1. Incomplete conversion of 2 into 1 suggests accumulation of the exogenously applied 2 in cell organelles and/or compartmentation of the enzymes involved in the biosynthesis of 1.
以¹³C标记的酪氨酸和³H标记的去氯尖刺碱2作为示踪剂,研究了尖刺碱1和去氯尖刺碱2之间的生物合成关系。¹³C标记的1和2的¹³C-NMR光谱表明,这两种生物碱均由两分子酪氨酸组成,它们源自相同的生物合成途径。用³H标记的2饲喂在富含氯化物的培养基中培养的蝙蝠葛(防己科)根,结果表明1是2的唯一生物碱代谢产物。根系吸收的外源施用的2有5%转化为1,这表明2是1的前体。2向1的不完全转化表明外源施用的2在细胞器中积累和/或参与1生物合成的酶存在区室化。