Duong Cac Thi Phung, Lee Han-Na, Choi Si-Sun, Lee Sang Yup, Kim Eung-Soo
Department of Biological Engineering, Inha University, Incheon 402-751, Korea.
J Microbiol Biotechnol. 2009 Feb;19(2):136-9. doi: 10.4014/jmb.0806.387.
Avermectin and its analogs are major commercial antiparasitic agents in the fields of animal health, agriculture, and human infections. Previously, comparative transcriptome analysis between the low-producer S. avermitilis ATCC31267 and the high-producer S. avermitilis ATCC31780 using a S. avermitilis whole genome chip revealed that 50 genes were overexpressed at least two-fold higher in S. avermitilis ATCC31780. To verify the biological significance of some of the transcriptomics-guided targets, five putative regulatory genes were individually cloned under the strong-andconstitutive promoter of the Streptomyces expression vector pSE34, followed by the transformation into the lowproducer S. avermitilis ATCC31267. Among the putative genes tested, three regulatory genes including SAV213, SAV3818, and SAV4023 exhibited stimulatory effects on avermectin production in S. avermitilis ATCC31267. Moreover, overexpression of SAV3818 also stimulated actinorhodin production in both S. coelicolor M145 and S. lividans TK21, implying that the SAV3818, a putative TetR-family transcriptional regulator, could be a global upregulator acting in antibiotic production in Streptomyces species.
阿维菌素及其类似物是动物健康、农业和人类感染领域主要的商业抗寄生虫药物。此前,使用阿维链霉菌全基因组芯片对低产阿维链霉菌ATCC31267和高产阿维链霉菌ATCC31780进行比较转录组分析,结果显示在阿维链霉菌ATCC31780中有50个基因的表达量至少高出两倍。为了验证一些转录组学指导靶点的生物学意义,将五个假定的调控基因分别克隆到链霉菌表达载体pSE34的强组成型启动子下,然后转化到低产阿维链霉菌ATCC31267中。在所测试的假定基因中,包括SAV213、SAV3818和SAV4023在内的三个调控基因对阿维链霉菌ATCC31267中的阿维菌素产量表现出刺激作用。此外,SAV3818的过表达也刺激了天蓝色链霉菌M145和变铅青链霉菌TK21中放线紫红素的产生,这意味着假定的TetR家族转录调节因子SAV3818可能是一种在链霉菌属抗生素生产中起作用的全局上调因子。