Zhu Chengjun, Xiao Fang, Qiu Yimin, Wang Qin, He Zhili, Chen Shouwen
Hubei Collaborative Innovation Center for Green Transformation of Bio-Resources, College of Life Sciences, Hubei University, 368 Youyi Ave., Wuchang District, Wuhan, Hubei, 430062, China.
State Key Laboratory of Agricultural Microbiology, Huazhong Agricultural University, Wuhan, 430070, China.
Appl Microbiol Biotechnol. 2017 Aug;101(16):6375-6383. doi: 10.1007/s00253-017-8352-z. Epub 2017 Jun 11.
Lichenysin is categorized into the family of lipopeptide biosurfactants and has a variety of applications in the petroleum industry, bioremediation, pharmaceuticals, and the food industry. Currently, large-scale production is limited due to the low yield. This study found that lichenysin production was repressed by supplementation of extracellular amino acids. The global transcriptional factor CodY was hypothesized to prevent lichenysin biosynthesis under an amino acid-rich condition in Bacillus licheniformis. Thus, the codY null strain was constructed, and lichenysin production was increased by 31.0% to 2356 mg/L with the addition of precursor amino acids, and the lichenysin production efficiency was improved by 42.8% to 98.2 mg/L• h. Correspondingly, the transcription levels of the lichenysin synthetase gene lchAA, and its corresponding regulator genes comA, degQ, and degU, were upregulated. Also, the codY deletion enhanced biosynthesis of lichenysin precursor amino acids (Gln, Ile, Leu, and Val) and reduced the formation of byproducts, acetate, acetoin, and 2,3-butanediol. This study firstly reported that lichenysin biosynthesis was negatively regulated by CodY and lichenysin production could be further improved with the precursor amino acid amendment in the codY null strain.
地衣溶素属于脂肽生物表面活性剂家族,在石油工业、生物修复、制药和食品工业中有多种应用。目前,由于产量低,大规模生产受到限制。本研究发现,补充细胞外氨基酸会抑制地衣溶素的产生。据推测,全局转录因子CodY在富含氨基酸的条件下会阻止地衣芽孢杆菌中地衣溶素的生物合成。因此,构建了codY缺失菌株,添加前体氨基酸后,地衣溶素产量提高了31.0%,达到2356 mg/L,地衣溶素生产效率提高了42.8%,达到98.2 mg/L•h。相应地,地衣溶素合成酶基因lchAA及其相应的调节基因comA、degQ和degU的转录水平上调。此外,codY缺失增强了地衣溶素前体氨基酸(Gln、Ile、Leu和Val)的生物合成,并减少了副产物乙酸盐、3-羟基丁酮和2,3-丁二醇的形成。本研究首次报道CodY对地衣溶素生物合成具有负调控作用,并且在codY缺失菌株中添加前体氨基酸可进一步提高地衣溶素产量。