Engelke G, Gutowski-Eckel Z, Hammelmann M, Entian K D
Institut für Mikrobiologie, Johann Wolfgang Goethe-Universität, Frankfurt/Main, Germany.
Appl Environ Microbiol. 1992 Nov;58(11):3730-43. doi: 10.1128/aem.58.11.3730-3743.1992.
Nisin produced by Lactococcus lactis 6F3 is used as a food preservative and is the most important member of a group of peptide-antibiotics containing lanthionine bridges (lantibiotics) (N. Schnell, K.-D. Entian, U. Schneider, F. Götz, H. Zähner, R. Kellner, and G. Jung, Nature [London] 333:276-278, 1988). Nisin is ribosomally synthesized, and its structural gene, nisA, encodes a prepeptide that is posttranslationally modified, revealing the active lantibiotic (C. Kaletta and K.-D. Entian, J. Bacteriol. 171:1597-1601, 1989). Adjacent to nisA, the additional genes nisB, nisT, and nisC were identified. Over their entire sequences, these genes were homologous to genes recently identified as important for the biosynthesis of lantibiotics, that is, subtilin from Bacillus subtilis ATCC 6633 and epidermin from Staphylococcus epidermidis Tü 3298. Genes nisB, nisT, and nisC corresponded to open reading frames of 993, 600, and 418 amino acid residues, respectively. The nisT open reading frame is homologous to proteins of the HlyB (hemolysin B protein of Escherichia coli) subfamily. Proteins of this subfamily are responsible for the secretion of a variety of compounds, including large polypeptides, polysaccharides, and anti-drug tumors, indicating that NisT may be involved in nisin transport. Northern (RNA) blot analysis revealed a 0.3-kb transcript for the nisA structural gene, and the transcriptional start point of the nisA gene was determined by primer extension. Additionally, a mRNA of at least 3 kb was identified by using a hybridization probe specific to nisB. Antibodies were raised against the NisB protein, and Western blot (immunoblot) analysis revealed a molecular weight of about 115 kDa, which is in accordance with the theoretical protein size of 117.5 kDa as calculated from the nisB open reading frame. Several amphipathic transmembrane alpha-helices indicated that NisB is associated with the membrane. This was confirmed by preparing L. lactis vesicles. The NisB protein was tightly associated with the vesicle fraction and was released by sodium dodecyl sulfate treatment only. These results suggest that NisB is membrane associated and that nisin biosynthesis occurs at the cell membrane.
乳酸乳球菌6F3产生的乳链菌肽用作食品防腐剂,是一组含硫醚桥肽抗生素(羊毛硫抗生素)中最重要的成员(N. Schnell、K.-D. Entian、U. Schneider、F. Götz、H. Zähner、R. Kellner和G. Jung,《自然》[伦敦]333:276 - 278,1988年)。乳链菌肽是通过核糖体合成的,其结构基因nisA编码一种前肽,该前肽经过翻译后修饰,形成具有活性的羊毛硫抗生素(C. Kaletta和K.-D. Entian,《细菌学杂志》171:1597 - 1601,1989年)。在nisA附近,还鉴定出了另外的基因nisB、nisT和nisC。在其整个序列上,这些基因与最近鉴定出的对羊毛硫抗生素生物合成很重要的基因同源,即来自枯草芽孢杆菌ATCC 6633的枯草菌素和来自表皮葡萄球菌Tü 3298的表皮菌素。基因nisB、nisT和nisC分别对应993、600和418个氨基酸残基的开放阅读框。nisT开放阅读框与HlyB(大肠杆菌溶血素B蛋白)亚家族的蛋白质同源。该亚家族的蛋白质负责多种化合物的分泌,包括大的多肽、多糖和抗肿瘤药物,这表明NisT可能参与乳链菌肽的转运。Northern(RNA)印迹分析显示nisA结构基因有一个0.3 kb的转录本,并且通过引物延伸确定了nisA基因的转录起始点。此外,使用针对nisB的杂交探针鉴定出了至少3 kb的mRNA。制备了针对NisB蛋白的抗体,Western印迹(免疫印迹)分析显示其分子量约为115 kDa, 这与根据nisB开放阅读框计算出的理论蛋白大小117.5 kDa一致。几个两亲性跨膜α螺旋表明NisB与膜相关。通过制备乳酸乳球菌囊泡证实了这一点。NisB蛋白与囊泡部分紧密结合,并且仅通过十二烷基硫酸钠处理才能释放。这些结果表明NisB与膜相关,并且乳链菌肽的生物合成发生在细胞膜上。