Kuipers O P, Beerthuyzen M M, Siezen R J, De Vos W M
Department of Biophysical Chemistry, Netherlands Institute for Dairy Research (NIZO), Ede.
Eur J Biochem. 1993 Aug 15;216(1):281-91. doi: 10.1111/j.1432-1033.1993.tb18143.x.
The nisin gene cluster nisABTCIPR of Lactococcus lactis, located on a 10-kbp DNA fragment of the nisin-sucrose transposon Tn5276, was characterized. This fragment was previously shown to direct nisin-A biosynthesis and to contain the nisP and nisR genes, encoding a nisin leader peptidase and a positive regulator, respectively [van der Meer, J. R., Polman, J., Beerthuyzen, M. M., Siezen, R. J., Kuipers, O. P. & de Vos, W. M. (1993) J. Bacteriol. 175, 2578-2588]. Further sequence analysis revealed the presence of four open-reading frames, nisB, nisT, nisC and nisI, downstream of the structural gene nisA. The nisT, nisC and nisI genes were subcloned and expressed individually in Escherichia coli, using the T7-RNA-polymerase system. This resulted in the production of radiolabelled proteins with sizes of 45 kDa (NisC) and 32 kDa (NisI). The nisT gene product was not detected, possibly because of protein instability. The deduced amino acid sequence of NisI contained a consensus lipoprotein signal sequence, suggesting that this protein is a lipid-modified extracellular membrane-anchored protein. Expression of nisI in L. lactis provided the cells with a significant level of protection against exogenously added nisin, indicating that NisI plays a role in the immunity mechanism. In EDTA-treated E. coli cells, expression of nisI conferred up to a 170-fold increase in immunity against nisin A compared to controls. Moreover, a lactococcal strain deficient in nisin-A production, designated NZ9800, was created by gene replacement of nisA by a truncated nisA gene and was 10-fold less resistant to nisin A than the wild-type strain. A wild-type immunity level to nisin and production of nisin was obtained in strain NZ9800 harboring complementing nisA and nisZ plasmids. Transcription analyses of several L. lactis strains indicated that an expression product of the nisA gene, together with NisR, is required for the activation of nisA transcription.
对位于乳链菌肽 - 蔗糖转座子Tn5276的10kbp DNA片段上的乳酸乳球菌乳链菌肽基因簇nisABTCIPR进行了表征。先前已表明该片段指导乳链菌肽A的生物合成,并包含nisP和nisR基因,分别编码乳链菌肽前导肽酶和正调控因子[范德米尔,J.R.,波尔曼,J.,贝瑟伊曾,M.M.,西曾,R.J.,凯珀斯,O.P.和德沃斯,W.M.(1993年)《细菌学杂志》175,2578 - 2588]。进一步的序列分析揭示在结构基因nisA下游存在四个开放阅读框,即nisB、nisT、nisC和nisI。利用T7 - RNA聚合酶系统将nisT、nisC和nisI基因亚克隆并分别在大肠杆菌中表达。这导致产生了大小分别为45kDa(NisC)和32kDa(NisI)的放射性标记蛋白。未检测到nisT基因产物,可能是由于蛋白质不稳定。NisI推导的氨基酸序列包含一个共有脂蛋白信号序列,表明该蛋白是一种脂质修饰的细胞外膜锚定蛋白。nisI在乳酸乳球菌中的表达为细胞提供了针对外源添加的乳链菌肽的显著保护水平,表明NisI在免疫机制中起作用。在经EDTA处理的大肠杆菌细胞中,与对照相比,nisI的表达使对乳链菌肽A的免疫力提高了170倍。此外,通过用截短的nisA基因替换nisA进行基因置换,创建了一株缺乏乳链菌肽A产生的乳球菌菌株,命名为NZ9800,其对乳链菌肽A的抗性比野生型菌株低10倍。在携带互补nisA和nisZ质粒的NZ9800菌株中获得了对乳链菌肽的野生型免疫水平和乳链菌肽的产生。对几种乳酸乳球菌菌株的转录分析表明,nisA基因的表达产物与NisR一起是激活nisA转录所必需的。