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首页> 外文期刊>Journal of Advances in Biology & Biotechnology >N-alkane Solvent-enhanced Biotransformation of Steroid DHEA by Beauveria bassiana as Biocatalyst
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N-alkane Solvent-enhanced Biotransformation of Steroid DHEA by Beauveria bassiana as Biocatalyst

机译:球孢白僵菌作为生物催化剂对甾体DHEA的N-链烷溶剂增强生物转化

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Aims: The hydroxylation capacity of Beauveria bassiana was enhanced with n-alkane solvents, resulting in a selective and eco-friendly scheme for the synthesis of steroids. A biocatalytic system was engineered to augment the 11α-hydroxylation of dehydroepiandrosterone (DHEA) to valuable intermediates. Exposing and inducing cells into n-alkanes improved the synthesis of 11α-hydroxy derivatives. Methodology and Results: Reactions were carried out with cells grown with n-dodecane (n-C12) and n-hexadecane (n-C16), resulting in 65%±6.3 conversion of DHEA to androstenediol (40.3%mM) and 3β,11α,17β-trihydroxyandrost-5-ene (22.8%mM), as determined by HPLC and NMR analyses. Experiments without the presence of n-alkanes resulted in 17% conversion of DHEA. Isolated products in this case included: Androstenediol (11.8%mM) and 3β,11α,17β-trihydroxyandrost-5-ene (4.78%mM). Results indicate that only the 3,17-hydroxy derivatives of DHEA undergo the 11α-hydroxylation pathway. Conclusions: The appearance of the products suggests that the reduction of the C-17 ketone of DHEA is preceded by the 11α-hydroxylation reaction when n-alkanes are present. This differs from reports in the literature, which proposed the activation of an unfunctionalized carbon to 11α-hydroxy-17-oxo derivatives before obtaining a 3β,11α,17β-triol product.
机译:目的:利用正构烷烃溶剂增强球孢白僵菌的羟化能力,从而产生了一种选择性且环境友好的甾族化合物合成方案。设计了一种生物催化系统,以将脱氢表雄酮(DHEA)的11α-羟基化反应增加到有价值的中间体。将细胞暴露并诱导成正构烷烃可改善11α-羟基衍生物的合成。方法学和结果:用正十二烷(nC 12 )和正十六烷(nC 16 )生长的细胞进行反应,结果转化率为65%±6.3。通过HPLC和NMR分析确定脱氢表雄酮生成雄烯二醇(40.3%mM)和3β,11α,17β-三羟基雄烷-5-烯(22.8%mM)。不存在正构烷烃的实验导致DHEA转化率为17%。在这种情况下,分离出的产物包括:雄烯二醇(11.8%mM)和3β,11α,17β-三羟基雄烷-5-烯(4.78%mM)。结果表明,仅DHEA的3,17-羟基衍生物经历11α-羟基化途径。结论:产物的外观表明当存在正构烷烃时,DHEA的C-17酮的还原先于11α-羟基化反应。这不同于文献中的报道,该文献提出了在获得3β,11α,17β-三醇产物之前将未官能化的碳活化为11α-羟基-17-氧代衍生物。

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