Suppr超能文献

在蒽环类生物合成中受损的天蓝链霉菌和加利利链霉菌突变体的种内和种间共合成活性。

Intra- and interspecific cosynthetic activity of mutants of Streptomyces coeruleorubidus and Streptomyces galilaeus impaired in the biosynthesis of anthracyclines.

作者信息

Blumauerová M, Královocová E, Hostálek Z, Vanĕk Z

出版信息

Folia Microbiol (Praha). 1979;24(2):128-35. doi: 10.1007/BF02927296.

Abstract

Cosynthesis of anthracycline compounds was followed in five phenotypic groups of mutants of Streptomyces coeruleorubidus (A--E), blocked in the biosynthesis of the daunomycine complex, and in two mutant types of Streptomyces galilaeus (F, G) blocked in the biosynthesis of glycosides of epsilon-pyrromycinone and aklavinone. Glycosides of daunomycinone and 13-dihydrodaunomycinone were produced in combinations A+B, A+C, A+D, A+E and A+F, epsilon-rhodomycinone was synthesized in combinations A+E, A+F, B+E and B+F. During the cultivation of types B--E with type G or F non-anthracycline compounds, typical of S. galilaeus, were cosynthesized. No cosynthesis could be observed in other combinations of the mutant types. Negative results were also obtained with combinations of mutants of the same group and during cultivation of all mutant types with streptomycetes not producing anthracyclines. A scheme illustrating metabolic pathways leading to the biosynthesis of daunomycinone, aklavinone, epsilon-rhodomycinone in S. coeruleorubidus and S. galilaeus was constructed.

摘要

在天蓝淡红链霉菌(A - E)的五个表型突变体组中追踪了蒽环类化合物的共合成,这些突变体在柔红霉素复合物的生物合成中受阻,以及在加利利链霉菌的两种突变体类型(F,G)中追踪了共合成,这两种突变体在ε-吡咯霉素酮和阿克拉霉素酮的糖苷生物合成中受阻。柔红霉素酮和13 - 二氢柔红霉素酮的糖苷在组合A + B、A + C、A + D、A + E和A + F中产生,ε-红霉酮在组合A + E、A + F、B + E和B + F中合成。在用G型或F型与B - E型培养期间,共合成了加利利链霉菌特有的非蒽环类化合物。在突变体类型的其他组合中未观察到共合成。在同一组突变体的组合中以及在用不产生蒽环类化合物的链霉菌培养所有突变体类型期间也得到了阴性结果。构建了一个示意图,展示了天蓝淡红链霉菌和加利利链霉菌中导致柔红霉素酮、阿克拉霉素酮、ε-红霉酮生物合成的代谢途径。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验