Overexpressing 3-ketosteroid-∆1-dehydrogenase for degrading phytosterols into androst-1,4-diene-3,17-dione
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National Basic Research Program of China (973 Program) (No. 2012CB725202), National High Technology Research and Development Programs of China (No. 2011AA02A211), National Natural Science Foundation of China (No. 21276110), Fundamental Research Funds for the Central Universities (No. JUSRP51306A), a Project Funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions.

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    Abstract:

    We constructed plasmid pMTac to overexpress 3-ketosteroid-?1-dehydrogenase (KSDD) in Mycobacterium neoaurum JC-12 for improving androst-1,4-diene-3,17-dione (ADD) production. To construct pMTac, pACE promoter on pMF41 was replaced by tac promoter, and then four recombinants were constructed, which were M. neoaurum JC-12/pMF41-gfp, M. neoaurum JC-12/pMTac-gfp, M. neoaurum JC-12/pMF41-ksdd and M. neoaurum JC-12/pMTac-ksdd. Fluorescence detection results show that much more green fluorescent protein (GFP) was expressed in M. neoaurum JC-12/pMTac-ksdd than M. neoaurum JC-12/pMF41-ksdd. The activity of KSDD was 2.41 U/mg in M. neoaurum JC-12/pMTac-ksdd, 6.53-fold as that of M. neoaurum JC-12 and 4.36-fold as that of M. neoaurum JC-12/pMF41-ksdd. In shake flask fermentation, ADD production of M. neoaurum JC-12/pMTac-ksdd was 5.94 g/L, increased about 22.2 % compared to the original strain M. neoaurum JC-12 and 12.7% to M. neoaurum JC-12/pMF41-ksdd. AD (4-androstene-3,17-dione) production of JC-12/pMTac-ksdd was 0.17 g/L, decreased 81.5% compared to M. neoaurum JC-12 and 71.2% to M. neoaurum JC-12/pMF41-ksdd. In the 5 L fermenter, 20 g/L phytosterols was used as substrate, ADD production of M. neoaurum JC-12/pMTac-ksdd was improved to 10.28 g/L. pMTac is favorable for expressing KSDD in M. neoaurum JC-12, and overexpression of KSDD has beneficial effect on ADD producing, and it is the highest level ever reported using fermentation method in M. neoaurum.

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张乐乐,张显,邵明龙,陈榕榕,饶志明,李会,许正宏. 表达3-甾酮-△1-脱氢酶降解植物甾醇合成雄甾-1,4-二烯-3,17-二酮[J]. Chinese Journal of Biotechnology, 2015, 31(11): 1589-1600

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  • Received:November 24,2014
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  • Online: October 29,2015
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