Platteeuw C, van Alen-Boerrigter I, van Schalkwijk S, de Vos W M
Department of Biophysical Chemistry, NIZO, Ede, The Netherlands.
Appl Environ Microbiol. 1996 Mar;62(3):1008-13. doi: 10.1128/aem.62.3.1008-1013.1996.
A versatile set of cloning and expression vectors has been developed for application in self-cloning and other genetic modifications of Lactococcus lactis. The expression vectors were equipped with the controlled and strong lacA promoter of the lactococcal lactose operon. In addition, the transcriptional terminator of the aminopeptidase N gene, pepN, was inserted, which in some cases increased the genetic stabilities of the vectors and the cloned DNA. The small, 0.3-kb lacF gene encoding the soluble carrier enzyme IIALac was used as a dominant selection marker in the plasmid-free L. lactis strain NZ3000 carrying an in-frame deletion of the chromosomal lacF gene. Lactose-utilizing transformants were easily selected on lactose indicator plates at high frequencies and showed a copy number of approximately 50 plasmids per cell. All vectors were stably maintained in the lacF strain NZ3000 when grown on lactose, and only the high-level expression vectors showed some instability when their host was grown on glucose-containing medium. The application potentials of the expression vectors carrying the lacF marker were determined by cloning of the promoterless Escherichia coli gusA reporter gene under control of the lacA promoter followed by analysis of its expression. While in one of the vectors this resulted in a promoter-down mutation in the -10 region of the lacA promoter, in other vectors high-level and controlled expression of the gusA gene was observed.
已开发出一套通用的克隆和表达载体,用于乳酸乳球菌的自克隆和其他基因修饰。这些表达载体配备了乳酸乳球菌乳糖操纵子的可控且强大的lacA启动子。此外,还插入了氨肽酶N基因(pepN)的转录终止子,在某些情况下,这提高了载体和克隆DNA的遗传稳定性。编码可溶性载体酶IIALac的0.3 kb小lacF基因,被用作无质粒乳酸乳球菌菌株NZ3000中的显性选择标记,该菌株的染色体lacF基因存在框内缺失。利用乳糖的转化子很容易在乳糖指示平板上以高频率被筛选出来,并且显示每个细胞中约有50个质粒的拷贝数。当在乳糖上生长时,所有载体在lacF菌株NZ3000中都能稳定维持,只有高水平表达载体在其宿主在含葡萄糖培养基上生长时显示出一些不稳定性。通过在lacA启动子控制下克隆无启动子的大肠杆菌gusA报告基因,然后分析其表达,确定了携带lacF标记的表达载体的应用潜力。在其中一个载体中,这导致了lacA启动子-10区域的启动子下调突变,而在其他载体中,则观察到了gusA基因的高水平和可控表达。