Li Juan, Guo Siyu, Hua Qiang, Hu Fengxian
State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai, 200237, China.
Shanghai Collaborative Innovation Center for Biomanufacturing Technology, 130 Meilong Road, Shanghai, 200237, China.
Biotechnol Lett. 2021 Jun;43(6):1143-1154. doi: 10.1007/s10529-020-03034-5. Epub 2021 Mar 22.
Ansamitocin (AP-3) is an ansamycins antibiotic isolated from Actinosynnema pretiosum and demonstrating high anti-tumor activity. To improve AP-3 production, the A. pretiosum ATCC 31565 strain was treated with atmospheric and room temperature plasma (ARTP). Four stable mutants were obtained by ARTP, of which the A. pretiosum L-40 mutant produced 242.9 mg/L AP-3, representing a 22.5% increase compared to the original wild type strain. With seed medium optimization, AP-3 production of mutant L-40 reached 307.8 mg/L; qRT-PCR analysis revealed that AP-3 biosynthesis-related gene expression was significantly up-regulated under optimized conditions. To further improve the AP-3 production, genome shuffling (GS) technology was used on the four A. pretiosum mutants by ARTP. After three rounds of GS combined with high-throughput screening, the genetically stable recombinant strain G3-96 was obtained. The production of AP-3 in the G3-96 strain was 410.1 mg/L in shake flask cultures, which was 44.5% higher than the L-40 production from the parental strain, and AP-3 was increased by 93.8% compared to the wild-type A. pretiosum. These results suggest that the combination of mutagenesis, seed medium optimization, and GS technology can effectively improve the AP-3 production capacity of A. pretiosum and provide an enabling methodology for AP-3 industrial production.
安丝菌素(AP-3)是一种从美丽放线菌中分离出来的安莎霉素类抗生素,具有很高的抗肿瘤活性。为提高AP-3的产量,对美丽放线菌ATCC 31565菌株进行了常压室温等离子体(ARTP)处理。通过ARTP获得了4个稳定突变体,其中美丽放线菌L-40突变体产生242.9mg/L的AP-3,与原始野生型菌株相比增加了22.5%。通过优化种子培养基,突变体L-40的AP-3产量达到307.8mg/L;qRT-PCR分析表明,在优化条件下,AP-3生物合成相关基因的表达显著上调。为进一步提高AP-3的产量,对4个经ARTP处理的美丽放线菌突变体采用了基因组改组(GS)技术。经过三轮GS结合高通量筛选,获得了遗传稳定的重组菌株G3-96。在摇瓶培养中,G3-96菌株的AP-3产量为410.1mg/L,比亲本菌株L-40的产量高44.5%,与野生型美丽放线菌相比,AP-3产量提高了93.8%。这些结果表明,诱变、种子培养基优化和GS技术相结合可以有效提高美丽放线菌的AP-3生产能力,并为AP-3的工业化生产提供一种可行的方法。