Ge Yihe, Yang Shude, Fang Yanyu, Yang Runya, Mou Daiying, Cui Jinpeng, Wen Lu
Department of Biological Science, Huaiyin Teachers College, Huaian, China.
FEMS Microbiol Lett. 2007 Mar;268(1):81-7. doi: 10.1111/j.1574-6968.2006.00562.x.
To investigate the regulatory mechanism governing antifungal metabolite biosynthesis, two kinds of global regulator genes in Pseudomonas sp. M18, an rpoS and an rsmA gene, were cloned and mutated by inserting with an aacC1 cassette, respectively. Two mutants showed the same regulatory mode with repression of phenazine-1-carboxylic acid and remarkable enhancement of pyoluteorin. In the rpoS-mutant, a translational rsmA'-'lacZ fusion was expressed at the same level corresponding to that in the wild-type strain. In the rsmA-mutant, however, expression of the translational rpoS'-'lacZ fusion was only about 30% of that in the wild-type strain. The results indicated that the absence of RsmA leads to repression of the rpoS gene expression, which has further been confirmed with construction of chromosomal rpoS-lacZ fusion in the rsmA-mutant and the wild-type strain, respectively. The findings showed a new regulatory cascade controlling antifungal metabolite production in Pseudomonas sp. M18, suggesting that RpoS may serve as a mediator in RsmA-dependent regulation of secondary metabolite biosynthesis.
为研究抗真菌代谢产物生物合成的调控机制,分别通过插入aacC1盒对假单胞菌属M18中的两种全局调控基因rpoS和rsmA基因进行克隆和突变。两个突变体表现出相同的调控模式,即吩嗪-1-羧酸受到抑制,而绿脓菌素显著增强。在rpoS突变体中,翻译型rsmA'-'lacZ融合蛋白的表达水平与野生型菌株相同。然而,在rsmA突变体中,翻译型rpoS'-'lacZ融合蛋白的表达仅为野生型菌株的30%左右。结果表明,RsmA的缺失导致rpoS基因表达受到抑制,分别在rsmA突变体和野生型菌株中构建染色体rpoS-lacZ融合蛋白进一步证实了这一点。这些发现揭示了假单胞菌属M18中控制抗真菌代谢产物产生的新调控级联,表明RpoS可能在RsmA依赖性的次级代谢产物生物合成调控中起介导作用。