State Key Lab of New Drugs and Pharmaceutical Process, Shanghai Institute of Pharmaceutical Industry, Shanghai, China.
Appl Environ Microbiol. 2013 Feb;79(4):1126-33. doi: 10.1128/AEM.02792-12. Epub 2012 Dec 7.
Anidulafungin, which noncompetitively inhibits β-(1,3)-D-glucan synthase in fungal cell wall biosynthesis, is the newest antifungal drug to be developed. Echinocandin B deacylase from Actinoplanes utahensis NRRL 12052 catalyzes the cleavage of the linoleoyl group of echinocandin B, a key step in the process of manufacturing anidulafungin. Unfortunately, the natural yield of echinocandin B nucleus is low. In our study, the echinocandin B deacylase gene was systematically overexpressed by genetic engineering in its original producer, A. utahensis, and in the heterologous hosts Streptomyces lividans TK24 and Streptomyces albus. The introduction of additional copies of the gene, under the control of PermE* or its native promoter, into hosts showed significant increases in its transcription level and in the efficiency of the bioconversion of echinocandin B to its nucleus. The conditions for the cultivation and bioconversion of A. utahensis have been optimized further to improve production. As a result, while the wild-type strain initially produced 0.36 g/liter, a concentration of 4.21 g/liter was obtained after the generation of a strain with additional copies of the gene and further optimization of the reaction conditions. These results are useful for enhancing echinocandin B nucleus production in A. utahensis. Our study could enable the engineering of commercially useful echinocandin B nucleus-overproducing stains.
阿尼达卢fungin,其非竞争性地抑制β-(1,3)-D-葡聚糖合酶在真菌细胞壁生物合成中,是最新的抗真菌药物的开发。棘白菌素 B 脱酰酶放线菌 utahensis NRRL 12052 催化裂解的亚油酸基团棘白菌素 B,在阿尼达卢fungin 的生产过程中的关键步骤。不幸的是,天然产率的棘白菌素 B 核是低的。在我们的研究中,棘白菌素 B 脱酰酶基因通过遗传工程在其原始生产者放线菌 utahensis 和异源宿主链霉菌 lividans TK24 和白色链霉菌中被系统地过表达。该基因的额外拷贝的引入,受 PermE*或其天然启动子的控制,在宿主中显示出其转录水平的显著增加和棘白菌素 B 到其核的生物转化效率的提高。放线菌 utahensis 的培养和生物转化条件进一步优化,以提高生产。结果,虽然野生型菌株最初产生 0.36 g/liter,浓度为 4.21 g/liter 获得了一个额外的拷贝的基因和进一步优化的反应条件的菌株后。这些结果是有用的,以提高棘白菌素 B 核的生产放线菌 utahensis。我们的研究可以使棘白菌素 B 核过表达株的工程商业化。