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通过经典菌株突变与培养基优化相结合的方法提高佩西链霉菌的阿霉素产量。

Enhanced doxorubicin production by Streptomyces peucetius using a combination of classical strain mutation and medium optimization.

作者信息

Wang Xiaoru, Tian Xiaorong, Wu Yuanjie, Shen Xiaofang, Yang Songbai, Chen Shaoxin

机构信息

a Shanghai Institute of Pharmaceutical Industry , Shanghai , China.

出版信息

Prep Biochem Biotechnol. 2018;48(6):514-521. doi: 10.1080/10826068.2018.1466156. Epub 2018 Jun 25.

Abstract

Doxorubicin (DXR), which is produced by Streptomyces peucetius, is an important anthracycline-type antibiotic used for the treatment of various cancers. However, due to the low DXR productivity of wild-type S. peucetius, it is difficult to produce DXR by one-step fermentation. In this study, a DXR-resistance screening method was developed to screen for DXR high-producing mutants. Then, S. peucetius SIPI-11 was treated several times with UV and ARTP (atmospheric and room temperature plasma) to induce mutations. Treated strains were screened by spreading on a DXR-containing plate, isolating a mutant (S. peucetius 33-24) with enhanced DXR yield (570 mg/L vs. 119 mg/L for the original strain). The components of the fermentation medium, including the carbon and nitrogen sources, were optimized to further enhance DXR yield (to 850 mg/L). The pH of the fermentation medium and culture temperature were also optimized for effective DXR production. Finally, DXR production by S. peucetius 33-24 was investigated in flask culture and a fermenter. The yield of DXR was as high as 1100 mg/L in a 5-L fermenter, which is the highest DXR productivity reported thus far, suggesting that S. peucetius 33-24 has the potential to produce DXR by direct fermentation.

摘要

阿霉素(DXR)由变铅青链霉菌产生,是一种用于治疗多种癌症的重要蒽环类抗生素。然而,由于野生型变铅青链霉菌的DXR产量较低,通过一步发酵生产DXR很困难。在本研究中,开发了一种DXR抗性筛选方法来筛选DXR高产突变体。然后,用紫外线和常压室温等离子体(ARTP)对变铅青链霉菌SIPI-11进行多次处理以诱导突变。通过在含DXR的平板上涂布来筛选处理过的菌株,分离出一株DXR产量提高的突变体(变铅青链霉菌33-24,其DXR产量为570mg/L,而原始菌株为119mg/L)。对发酵培养基的成分,包括碳源和氮源进行优化,以进一步提高DXR产量(提高到850mg/L)。还对发酵培养基的pH值和培养温度进行了优化,以实现有效的DXR生产。最后,在摇瓶培养和发酵罐中研究了变铅青链霉菌33-24的DXR生产情况。在5L发酵罐中,DXR产量高达1100mg/L,这是迄今为止报道的最高DXR生产率,表明变铅青链霉菌33-24具有通过直接发酵生产DXR的潜力。

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