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2-脱氧链霉胺和新霉胺C生物合成的机制与立体化学

Mechanism and stereochemistry of the biosynthesis of 2-deoxystreptamine and neosamine C.

作者信息

Kakinuma K, Ogawa Y, Sasaki T, Seto H, Otake N

机构信息

Laboratory of Chemistry for Natural Products, Tokyo Institute of Technology, Yokohama, Japan.

出版信息

J Antibiot (Tokyo). 1989 Jun;42(6):926-33. doi: 10.7164/antibiotics.42.926.

Abstract

Feeding experiments with D-[6,6-2H2]-, D-(6R)-[6-2H1]- and D-(6S)-[6-2H1]glucose in the fermentation of Streptomyces ribosidificus, followed by field desorption MS and 2H NMR analyses of the resulting labeled ribostamycin samples, clearly demonstrated that 1) both hydrogens of the C-6 hydroxymethyl group of D-glucose are stereospecifically incorporated into the C-2 position of 2-deoxystreptamine and 2) the pro S hydrogen of the C-6 position of D-glucose is stereospecifically removed during the elaboration of neosamine C in the biosynthesis of ribostamycin. A plausible mechanism of formation of the deoxy-scyllo-inosose, an early precursor to 2-deoxystreptamine, is suggested to be analogous to the dehydroquinate synthesis in the shikimate pathway and the conversion of the C-6 hydroxymethyl group of D-glucose into the aminomethyl group of neosamine C is likely to involve a dehydrogenation step to a formyl group.

摘要

用D-[6,6-2H₂]-、D-(6R)-[6-²H₁]-和D-(6S)-[6-²H₁]葡萄糖对产核糖链霉菌进行发酵喂养实验,随后对所得标记的核糖霉素样品进行场解吸质谱分析和²H核磁共振分析,结果清楚地表明:1)D-葡萄糖C-6羟甲基的两个氢原子立体专一性地掺入2-脱氧链霉胺的C-2位;2)在核糖霉素生物合成过程中,新霉胺C的合成过程中,D-葡萄糖C-6位的前手性氢原子立体专一性地被去除。有人提出,2-脱氧链霉胺的早期前体脱氧异丝氨酸的一种合理形成机制类似于莽草酸途径中的脱氢奎尼酸合成,D-葡萄糖C-6羟甲基向新霉胺C的氨甲基的转化可能涉及到一个脱氢成甲酰基的步骤。

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