Toder D S, Ferrell S J, Nezezon J L, Rust L, Iglewski B H
Department of Pediatrics, University of Rochester, School of Medicine and Dentistry, New York 14642.
Infect Immun. 1994 Apr;62(4):1320-7. doi: 10.1128/iai.62.4.1320-1327.1994.
The lasA gene was the first of the Pseudomonas aeruginosa genes involved in proteolysis and elastolysis to be cloned and sequenced. Its function and significance have been studied by genetic approaches (D. S. Toder, M. J. Gambello, and B. H. Iglewski, Mol. Microbiol. 5:2003-2010, 1991) and by attempts to purify an active fragment of the protein (J. E. Peters and D. R. Galloway, J. Bacteriol. 172:2236-2240, 1990). To further study LasA in vivo, we have constructed and characterized an insertional mutant in the lasA gene in strain PAO1 (PAO-A1) and in the lasB insertional mutant, PAO-B1. Analysis of these isogenic strains demonstrates that the lasA lesion diminished elastolysis more than proteolysis and that LasA is required for staphylolytic activity. Despite previous suggestions that lasB elastase cleaves the LasA protein, the size of the LasA protein was the same whether or not lasB elastase was present. Expression of lasA in a lasR-negative mutant, PAO-R1, demonstrated that the LasA protein is produced in an active form in the absence of (lasB) elastase or alkaline protease and is itself a protease with elastolytic activity. We also observed that PAO-A1 was closer to the parental phenotype, with respect to elastolytic and proteolytic activities, than the previously characterized, chemically induced lasA mutant PAO-E64. Quantification of promoter activity with lasA::lacZ and lasB::lacZ fusions suggests that PAO-E64 harbors a mutation in a gene which regulates expression of both lasA and lasB.
lasA基因是铜绿假单胞菌中第一个被克隆和测序的参与蛋白水解和弹性蛋白水解的基因。其功能和意义已通过遗传学方法(D. S. 托德、M. J. 甘贝洛和B. H. 伊格莱夫斯基,《分子微生物学》5:2003 - 2010,1991)以及纯化该蛋白活性片段的尝试(J. E. 彼得斯和D. R. 加洛韦,《细菌学杂志》172:2236 - 2240,1990)进行了研究。为了在体内进一步研究LasA,我们构建并鉴定了PAO1菌株(PAO - A1)中lasA基因的插入突变体以及lasB插入突变体PAO - B1。对这些同基因菌株的分析表明,lasA损伤对弹性蛋白水解的影响大于蛋白水解,并且LasA是葡萄球菌溶解活性所必需的。尽管之前有观点认为lasB弹性蛋白酶可切割LasA蛋白,但无论是否存在lasB弹性蛋白酶,LasA蛋白的大小都是相同的。lasA在lasR阴性突变体PAO - R1中的表达表明,在没有(lasB)弹性蛋白酶或碱性蛋白酶的情况下,LasA蛋白以活性形式产生,并且其本身就是一种具有弹性蛋白水解活性的蛋白酶。我们还观察到,就弹性蛋白水解和蛋白水解活性而言,PAO - A1比先前鉴定的化学诱导lasA突变体PAO - E64更接近亲本表型。用lasA::lacZ和lasB::lacZ融合体对启动子活性进行定量分析表明,PAO - E64在一个调节lasA和lasB表达的基因中存在突变。