首页> 外文期刊>Acta Pharmaceutica Sinica B >Construction of acetyl-CoA and DBAT hybrid metabolic pathway for acetylation of 10-deacetylbaccatin III to baccatin III
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Construction of acetyl-CoA and DBAT hybrid metabolic pathway for acetylation of 10-deacetylbaccatin III to baccatin III

机译:乙酰-CoA和DBAT杂交代谢途径的构建,用于乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰苄醇III

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10-Deacetylbaccatin III (10-DAB) C10 acetylation is an indispensable procedure for Taxol semi-synthesis, which often requires harsh conditions. 10-Deacetylbaccatin III-10- β - O -acetyltransferase (DBAT) catalyzes the acetylation but acetyl-CoA supply remains a key limiting factor. Here we refactored the innate biosynthetic pathway of acetyl-CoA in Escherichia coli and obtained a chassis with acetyl-CoA productivity over three times higher than that of the host cell. Then, we constructed a microbial cell factory by introducing DBAT gene into this chassis for efficiently converting 10-DAB into baccatin III. We found that baccatin III could be efficiently deacetylated into 10-DAB by DBAT with CoASH and K + under alkaline condition. Thus, we fed acetic acid to the engineered strain both for serving as a substrate of acetyl-CoA biosynthesis and for alleviating the deacetylation of baccatin III. The fermentation conditions were optimized and the baccatin III titers reached 2, 3 and 4.6?g/L, respectively, in a 3-L bioreactor culture when 2, 3 and 6?g/L of 10-DAB were supplied. Our study provides an environment-friendly approach for the large scale 10-DAB acetylation without addition of acetyl-CoA in the industrial Taxol semi-synthesis. The finding of DBAT deacetylase activity may broaden its application in the structural modification of pharmaceutically important lead compounds.
机译:10-Deaetylbaccatin III(10-DAB)C10乙酰化是紫杉醇半合成的必不可少的程序,这通常需要恶劣的条件。 10-Deaetylbaccatin III-10-β - O-乙酰转移酶(DBAT)催化乙酰化,但乙酰-COA供给仍然是一个关键限制因子。在这里,我们改进了大肠杆菌中乙酰-CoA的先天生物合成途径,并获得了比宿主细胞高出三倍的乙酰-CoA生产率的底盘。然后,我们通过将DBAT基因引入该底盘来构建微生物细胞工厂,以将10-DAB有效地转化为植物III。我们发现,在碱性条件下,DBAT可以通过DBAT将BACCATIN III有效地脱乙酰化成10-DAB。因此,我们将醋酸喂给工程菌株,用于用作乙酰-CoA生物合成的底物,并用于减轻释放粘蛋白III的脱乙酰化。优化发酵条件,当提供2,3和6μl10dab时,分别在3-L生物反应器培养中分别在3-L生物反应器培养中达到2,3和4.6μl滴度。我们的研究为大规模的10-DAB乙酰化提供了一种环境友好的方法,而在工业紫杉醇半合成中加入乙酰基辅作。 DBAT DEAETYLASE活性的发现可以扩大其在药学上重要的铅化合物的结构改性中的应用。

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