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一种从生物可再生植物甾醇高效合成具有10α-甲基和C17位侧链甾体药物的化学酶法策略。

Chemo-Enzymatic Strategy for the Efficient Synthesis of Steroidal Drugs with 10α-Methyl Group and a Side Chain at C17-Position from Biorenewable Phytosterols.

作者信息

Li Xuemei, Zhang Rui, Li Jianjiong, Liu Na, Chen Xi, Liu Yiyin, Zhao Gang, Ding Kai, Yao Peiyuan, Feng Jinhui, Wu Qiaqing, Zhu Dunming, Ma Yanhe

机构信息

National Engineering Research Center of Industrial Enzymes and Tianjin Engineering Research Center of Biocatalytic Technology, Key Laboratory of Engineering Biology for Low-carbon Manufacturing, National Center of Technology Innovation for Synthetic Biology, and Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin 300308, China.

CAS Key Laboratory of Synthetic Chemistry of Natural Substances, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai 200032, China.

出版信息

JACS Au. 2024 Mar 29;4(4):1356-1364. doi: 10.1021/jacsau.3c00688. eCollection 2024 Apr 22.

Abstract

Steroidal pharmaceuticals with a 10α-methyl group or without the methyl group at C10-position are important medicines, but their synthesis is quite challenging, due to that the natural steroidal starting materials usually have a 10β-methyl group which is difficult to be inverted to 10α-methyl group. In this study, 3-((1,3a,4,7a)-1-(()-1-hydroxypropan-2-yl)-7a-methyl-5-oxooctahydro-1-inden-4-yl) propanoic acid (HIP-IPA, ) was demonstrated as a valuable intermediate for the synthesis of this kind of active pharmaceutical ingredients (APIs) with a side chain at C17-position. Knockout of a β-hydroxyacyl-CoA dehydrogenase gene and introduction of a sterol aldolase gene into the genetically modified strains of (ATCC 6841) resulted in strains N13ΔΩ and N33ΔΩ, respectively. Both strains transformed phytosterols into . Compound was produced in 62% isolated yield (25 g) using strain N13ΔΩ, and further converted to (3S,3aS,9aS,9bS)-3-acetyl-3a,6-dimethyl-1,2,3,3a,4,5,8,9,9a,9b-decahydro-7H-cyclopenta[a]naphthalen-7-one, which is the key intermediate for the synthesis of dydrogesterone. This study not only overcomes a challenging synthetic problem by enabling an efficient synthesis of dydrogesterone-like steroidal APIs from phytosterols, the well-recognized cheap and readily available biobased raw materials, but also provides insights for redesigning the metabolic pathway of phytosterols to produce other new compounds of relevance to the steroidal pharmaceutical industry.

摘要

具有10α-甲基或C10位无甲基的甾体药物是重要的药物,但其合成颇具挑战性,因为天然甾体起始原料通常具有10β-甲基,难以转化为10α-甲基。在本研究中,3-((1,3a,4,7a)-1-((S)-1-羟基丙-2-基)-7a-甲基-5-氧代八氢-1-茚满-4-基)丙酸(HIP-IPA)被证明是合成这类在C17位带有侧链的活性药物成分(API)的有价值中间体。敲除β-羟基酰基辅酶A脱氢酶基因并将甾醇醛缩酶基因导入基因工程改造的粪肠球菌(ATCC 6841)菌株中,分别得到菌株N13ΔΩ和N33ΔΩ。这两种菌株都将植物甾醇转化为HIP-IPA。使用菌株N13ΔΩ以62%的分离产率(25 g)制备了化合物HIP-IPA,并进一步将其转化为(3S,3aS,9aS,9bS)-3-乙酰基-3a,6-二甲基-1,2,3,3a,4,5,8,9,9a,9b-十氢-7H-环戊[a]萘-7-酮,这是合成醋酸甲羟孕酮的关键中间体。本研究不仅通过实现从植物甾醇(公认的廉价且易于获得的生物基原料)高效合成醋酸甲羟孕酮类甾体API克服了一个具有挑战性的合成问题,还为重新设计植物甾醇代谢途径以生产其他与甾体制药行业相关的新化合物提供了思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff49/11040700/cc77bf80c6f9/au3c00688_0002.jpg

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