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Transformation of Steroids by Spores of Microorganisms I. Hydroxylation of Progesterone by Conidia of Aspergillus ochraceus

机译:微生物孢子转化类固醇的研究I. och曲霉分生孢子使孕酮羟化

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Conidia of Aspergillus ochraceus convert progesterone into 11α-hydroxyprogesterone and 6β, 11α-dihydroxyprogesterone. The conversion ability does not depend on the sporulation medium. Transformation depends on the strain and on the conidia concentration. Adaptation has never been observed. Age and storage of conidia, pH, aeration-agitation, nitrogen source, metal ions, chelating agents, and metabolic activators showed no great influence within wide limits. Mercuric chloride, p-chloromercuribenzoate, NaN3, and KCN inhibit conversion. Glucose is necessary, but can be replaced completely by d(+)-xylose, and partially by some other carbon sources. The ratio mono-/di-hydroxyprogesterone is influenced by progesterone concentration and period of incubation; also, a mutant that accumulates only monohydroxyprogesterone has been produced. Conidia of A. ochraceus also hydroxylate a variety of steroids. Spores of certain streptomycetes, phycomycetes (mucors), ascomycetes, and deuteromycetes are active. Most reactions already observed with vegetative cells have been repeated with spores. In general, spores of a particular organism effect fewer reactions than its mycelium, and fewer products accumulate.
机译:曲霉的分生孢子将孕酮转化为11α-羟基孕酮和6β,11α-二羟基孕酮。转化能力不取决于孢子形成介质。转化取决于菌株和分生孢子浓度。从未观察到适应。分生孢子的年龄和储存,pH,通气搅拌,氮源,金属离子,螯合剂和代谢活化剂在很宽的范围内都没有显示出很大的影响。氯化汞,对氯巯基苯甲酸酯,NaN3和KCN会抑制转化。葡萄糖是必需的,但可以完全被d(+)-木糖替代,而部分被其他一些碳源替代。单/二羟基孕酮的比例受孕酮浓度和孵育时间的影响;同样,已经产生了仅积累单羟基孕酮的突变体。 och曲霉的分生孢子也使多种类固醇羟化。某些链霉菌,藻生菌(黏液),子囊菌和氘核菌的孢子是活跃的。已经用营养细胞观察到的大多数反应已经用孢子重复了。通常,特定生物的孢子比其菌丝体产生的反应更少,并且积聚的产物也更少。

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