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New 6,19-oxidoandrostan derivatives obtained by biotransformation in environmental filamentous fungi cultures

机译:通过生物转化在环境丝状真菌培养物中获得的新的6,19-氧化丁醇衍生物

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摘要

Abstract Background Steroid compounds with a 6,19-oxirane bridge possess interesting biological activities including anticonvulsant and analgesic properties, bacteriostatic activity against Gram-positive bacteria and selective anti-glucocorticoid action, while lacking mineralocorticoid and progestagen activity. Results The study aimed to obtain new derivatives of 3β-acetyloxy-5α-chloro-6,19-oxidoandrostan-17-one by microbial transformation. Twelve filamentous fungal strains were used as catalysts, including entomopathogenic strains with specific activity in the transformation of steroid compounds. All selected strains were characterised by high biotransformation capacity for steroid compounds. However, high substrate conversions were obtained in the cultures of 8 strains: Beauveria bassiana KCh BBT, Beauveria caledonica KCh J3.4, Penicillium commune KCh W7, Penicillium chrysogenum KCh S4, Mucor hiemalis KCh W2, Fusarium acuminatum KCh S1, Trichoderma atroviride KCh TRW and Isaria farinosa KCh KW1.1. Based on gas chromatography (GC) and nuclear magnetic resonance (NMR) analyses, it was found that almost all strains hydrolysed the ester bond of the acetyl group. The strain M. hiemalis KCh W2 reduced the carbonyl group additionally. From the P. commune KCh W7 and P. chrysogenum KCh S4 strain cultures a product of D-ring Baeyer–Villiger oxidation was isolated, whereas from the culture of B. bassiana KCh BBT a product of hydroxylation at the 11α position and oxidation of the D ring was obtained. Three 11α-hydroxy derivatives were obtained in the culture of I. farinosa KCh KW1.1: 3β,11α-dihydroxy-5α-chloro-6,19-oxidoandrostan-17-one, 3β,11α,19-trihydroxy-5α-chloro-6,19-oxidoandrostan-17-one and 3β,11α-dihydroxy-5α-chloro-6,19-oxidoandrostan-17,19-dione. They are a result of consecutive reactions of hydrolysis of the acetyl group at C-3, 11α- hydroxylation, then hydroxylation at C-19 and its further oxidation to lactone. Conclusions As a result of the biotransformations, seven steroid derivatives, not previously described in the literature, were obtained: 3β-hydroxy-5α-chloro-6,19-oxidoandrostan-17-one, 3β,17α-dihydroxy-5α-chloro-6,19-oxidoandrostane, 3β-hydroxy-5α-chloro-17α-oxa-D-homo-6,19-oxidoandrostan-17-one, 3β,11α-dihydroxy-5α-chloro-17α-oxa-D-homo-6,19-oxidoandrostan-17-one and the three above–mentioned 11α-hydroxy derivatives. This study will allow a better understanding and characterisation of the catalytic abilities of individual microorganisms, which is crucial for more accurate planning of experiments and achieving more predictable results.
机译:用6,19 - 环氧乙烷桥抽象背景类固醇化合物具有令人感兴趣的生物活性,包括抗惊厥药和止痛特性,对革兰氏阳性菌和选择性的抗糖皮质激素作用的抑菌活性,而缺乏盐皮质激素和孕激素的活性。结果研究的目的是获得3β乙酰氧基5α氯6,19-oxidoandrostan -17-酮通过微生物转化的新的衍生物。十二丝状真菌菌株被用作催化剂,包括在类固醇化合物的转化比活性昆虫病原株。通过对类固醇化合物的生物转化的高容量所有选出的菌株进行表征。然而,在8个菌株的培养物得到的高的底物的转化:白僵菌KCH BBT,白僵菌caledonica KCH J3.4,青霉KCH W7,产黄青霉KCH S4,冻土毛霉KCH W2,尖镰尖锐湿疣KCH S1,深绿木霉KCH TRW和棒束孢farinosa KCH KW1.1。根据气相色谱法(GC)和核磁共振(NMR)分析,发现几乎所有的菌株水解乙酰基的酯键。应变M.冻土KCH W2另外降低了羰基。从青霉KCH W7和产黄青霉KCH S4菌株培养物d-环拜尔 - 维利格氧化的产物被分离,而从球孢白僵菌KCH BBT的培养羟基化的产物在的所述11α位置和氧化得到d环。 3β,11α二羟基5α氯6,19-oxidoandrostan -17-酮,3β,11α,19-三羟基 - 5α氯:在一farinosa KCH KW1.1的培养物中获得的三个11α羟基衍生物-6,19-oxidoandrostan -17-酮和3β,11α二羟基5α氯6,19-oxidoandrostan -17,19-二酮。它们是在C-3,11α-羟基化,然后在C-19羟基化和它的进一步氧化为内酯乙酰基的水解的连续反应的结果。结论作为生物转化的结果,七类固醇衍生物,以前没有在文献中描述,得到:3β羟基5α氯6,19-oxidoandrostan -17-酮,3β,17α二羟基5α氯6,19-oxidoandrostane,3β羟基5α氯17α氧杂d-HOMO-6,19-oxidoandrostan -17-酮,3β,11α二羟基5α氯17α氧杂d-均聚物6,19-oxidoandrostan -17-酮和三上述11α羟基衍生物。这项研究将允许个别微生物的催化能力,更好地理解和表征,这是实验更准确的规划和实现更可预测的结果至关重要。

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