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通过对MSMB43进行代谢工程改造及中试规模发酵提高细胞毒性泰国他汀A和D的产量。

Improved production of cytotoxic thailanstatins A and D through metabolic engineering of MSMB43 and pilot scale fermentation.

作者信息

Liu Xiangyang, Zhu Hui, Biswas Sreya, Cheng Yi-Qiang

机构信息

UNT System College of Pharmacy, University of North Texas Health Science Center, Fort Worth, TX, USA.

Department of Biological Sciences, University of Wisconsin-Milwaukee, Milwaukee, WI, USA.

出版信息

Synth Syst Biotechnol. 2016 Apr 1;1(1):34-38. doi: 10.1016/j.synbio.2016.02.002. eCollection 2016 Mar.

Abstract

Thailanstatin A (TST-A) is a potent antiproliferative natural product discovered by our group from MSMB43 through a genome-guided approach. The limited supply of TST-A, due to its low titer in bacterial fermentation, modest stability and very low recovery rate during purification, has hindered the investigations of TST-A as an anticancer drug candidate. Here we report the significant yield improvement of TST-A and its direct precursor, thailanstatin D (TST-D), through metabolic engineering of the thailanstatin biosynthetic pathway in MSMB43. Deletion of , which encodes a dioxygenase involved in converting TST-A to downstream products including FR901464 (FR), resulted in 58% increase of the TST-A titer to 144.7 ± 2.3 mg/L and 132% increase of the TST-D titer to 14.6 ± 0.5 mg/L in the fermentation broth, respectively. Deletion of , which encodes a cytochrome P450 involved in converting TST-D to TST-A, resulted in more than 7-fold increase of the TST-D titer to 53.2 ± 12.1 mg/L in the fermentation broth. An execution of 90 L pilot-scale fed-batch fermentation of the deletion mutant in a 120-L fermentor led to the preparation of 714 mg of TST-A with greater than 98.5% purity. The half-life of TST-D in a phosphate buffer was found to be at least 202 h, significantly longer than that of TST-A or FR, suggesting superior stability. However, the IC values of TST-D against representative human cancer cell lines were determined to be greater than those of TST-A, indicating weaker antiproliferative activity. This work enabled us to prepare sufficient quantities of TST-A and TST-D for our ongoing translational research.

摘要

泰国他汀A(TST-A)是我们团队通过基因组导向方法从MSMB43中发现的一种强效抗增殖天然产物。由于TST-A在细菌发酵中的效价较低、稳定性一般且纯化过程中的回收率极低,其供应有限,这阻碍了将TST-A作为抗癌药物候选物的研究。在此,我们报告通过对MSMB43中泰国他汀生物合成途径进行代谢工程,TST-A及其直接前体泰国他汀D(TST-D)的产量显著提高。删除编码参与将TST-A转化为包括FR901464(FR)在内的下游产物的双加氧酶的基因,导致发酵液中TST-A效价提高58%,达到144.7±2.3 mg/L,TST-D效价提高132%,达到14.6±0.5 mg/L。删除编码参与将TST-D转化为TST-A的细胞色素P450的基因,导致发酵液中TST-D效价提高7倍以上,达到53.2±12.1 mg/L。在120-L发酵罐中对该缺失突变体进行90 L中试规模的补料分批发酵,制备得到了纯度大于98.5%的714 mg TST-A。发现TST-D在磷酸盐缓冲液中的半衰期至少为202 h,明显长于TST-A或FR,表明其稳定性更佳。然而,TST-D对代表性人类癌细胞系的IC值被确定大于TST-A,表明其抗增殖活性较弱。这项工作使我们能够制备足够数量的TST-A和TST-D用于我们正在进行的转化研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4aae/5640593/9b94f17d4540/synbio12-fig-0001.jpg

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