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首页> 外文期刊>The Journal of Antibiotics: An International Journal >3-amino-5-hydroxybenzoic acid in antibiotic biosynthesis. XI. Biological origins and semisynthesis of thionaphthomycins, and the structures of naphthomycins I and j
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3-amino-5-hydroxybenzoic acid in antibiotic biosynthesis. XI. Biological origins and semisynthesis of thionaphthomycins, and the structures of naphthomycins I and j

机译:3-氨基-5-羟基苯甲酸在抗生素的生物合成中。十一。硫代萘霉素的生物学起源和半合成以及萘并霉素I和j的结构

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摘要

Fermentations of Streptomyces sp. E/784 produce low levels of the novel C-30 alkylthio-substituted ansamycin antibiotics naphthomycins J (9) and I(10), in addition to the more abundant C-30 hydroxylated analogues actamycin (1) and naphthomycin D (2) and C-30 chlorinated analogues naphthomycins H (3) and A (4). The addition of N-acetyl-L-cysteine to the fermentation medium substantially increases the production of the thionaphthomycins J and I at the expense of their chloro analogues H and A. Other thiols and thiol progenitors are similarly utilised, including N-acetyl-L-cysteine methyl ester which affords the known naphthomycin F (8) and its novel 2-demethyl homologue (7). The formation of thioansamycins from chloroansamycins and thiols in vivo is probably non-enzymic since similar conversions can be effected in vitro. [References: 22]
机译:链霉菌的发酵。 E / 784产生的C-30烷硫基取代的新型安沙霉素抗生素萘霉素J(9)和I(10)含量较低,此外C-30羟化类似物阿霉素(1)和萘霉素D(2)和N含量更高。 C-30氯化类似物萘霉素H(3)和A(4)。向发酵培养基中添加N-乙酰基-L-半胱氨酸可大大提高硫代萘霉素J和I的产量,但会损失其氯代类似物H和A。其他类似的硫醇和硫醇祖细胞也得到了利用,包括N-乙酰基-L -半胱氨酸甲酯,提供已知的萘霉素F(8)及其新型的2-demethyl同系物(7)。体内由氯安霉素和硫醇形成的硫代霉素可能是非酶促的,因为类似的转化可以在体外进行。 [参考:22]

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