详细信息
Transformation of phytosterols into pregnatetraenedione by a combined microbial and chemical process ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:Transformation of phytosterols into pregnatetraenedione by a combined microbial and chemical process
作者:Liu, Yong-Jun[1];Ji, Wei-ting[1];Song, Lu[1];Tao, Xin-Yi[1];Zhao, Ming[1];Gao, Bei[1];Meng, Hao[2];Wang, Feng-Qing[1];Wei, Dong-Zhi[1]
机构:[1]East China Univ Sci & Technol, Newworld Inst Biotechnol, State Key Lab Bioreactor Engn, Shanghai 200237, Peoples R China;[2]Hunan Norchem Pharmaceut Co Ltd, Changde 415400, Peoples R China
年份:2022
卷号:24
期号:9
起止页码:3759
外文期刊名:GREEN CHEMISTRY
收录:;EI(收录号:20221912099526);WOS:【SCI-EXPANDED(收录号:WOS:000785835900001)】;
基金:This work was financially supported by the National Natural Science Foundation of China (No. 21776075), the Natural Science Foundation of Shanghai (No. 20ZR1415100) and the National Key Research and Development Program of China (No. SQ2020YFC210061).
语种:英文
外文关键词:Alcohols - Carboxylation - Drug products - Metabolism - Metabolites - Polyols
摘要:Pregna-1,4,9(11),16(17)-tetraene-3,20-dione (pregnatetraenedione) is the most useful precursor for the synthesis of corticosteroids in industry. However, the production of pregnatetraenedione is still a complex and expensive process. Here, we proposed a greener and more economical route for the synthesis of pregnatetraenedione, which was achieved via the conversion of phytosterols to an uncommon steroid compound, 9 alpha-hydroxy-3-oxo-4,17(20)-pregna-diene-20-carboxylic acid (9-OHPDC), by an engineered Mycolicibacterium neoaurum. 9-OHPDC is a metabolite of sterols obtained by partially degrading its C17 side-chain and hitherto it is difficult to exclusively produce due to its complex metabolic process. In this study, we systematically investigated the determinants related to the generation of 9-OHPDC in the metabolic process of phytosterols and developed a 9-OHPDC-producing strain with the methyl-esterified 9-OHPDC (9-OHPDC-M) as the main product by metabolic engineering. The production of 9-OHPDC and 9-OHPDC-M respectively reached 9.86 g L-1 and 1.27 g L-1 in about 6 days and the total mole yield was more than 85.9%. Using 9-OHPDC-M as a synthon, subsequently, a four-step chemical process for the synthesis of pregnatetraenedione was designed and verified, which was composed of the following steps: hydrolysis of 9-OHPDC-M to 9-OHPDC, decarboxylation rearrangement, dehydration and Delta(1) dehydrogenation. From phytosterols to pregnatetraenedione, the combined microbial and chemical process showed a total weight yield of up to 35.4%, significantly higher than that of the current industrial routes. In addition, compared with the current routes, the new synthesis route has the advantages of shorter reaction steps, milder reaction conditions, reduced use of organic solvents and abandonment of toxic catalysts. In a word, this study provided a green route for the production of pregnatetraenedione, which can be used for corticosteroid production in industry.
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