Venema K, Haverkort R E, Abee T, Haandrikman A J, Leenhouts K J, de Leij L, Venema G, Kok J
Department of Genetics, Groningen Biomolecular Sciences and Biotechnology Centre, University of Groningen, Haren, The Netherlands.
Mol Microbiol. 1994 Nov;14(3):521-32. doi: 10.1111/j.1365-2958.1994.tb02186.x.
Monoclonal antibodies were raised against a fusion between the Escherichia coli maltose-binding protein and LciA, the immunity protein that protects Lactococcus lactis against the effects of the bacteriocin lactococcin A. One of the antibodies directed against the LciA moiety of the fusion protein was used to locate the immunity protein in the L. lactis producer cell. LciA was present in the cytosolic, the membrane-associated, and the membrane fractions in roughly equal amounts, irrespective of the production by the cells of lactococcin A. The monoclonal antibody specifically reacted with right-side-out vesicles obtained from a strain producing the immunity protein. It did not react with inside-out vesicles of the same strain, or with right-side-out vesicles obtained from a strain producing both LciA and lactococcin A. Also, externally added lactococcin A blocked the interaction between the antibody and right-side-out vesicles obtained from a strain producing only LciA. The epitope in LciA was localized between amino acid residues 60 and 80. As the epitope could be removed from right-side-out vesicles by proteinase K, it is located at the outside of the cell. The immunity protein contains a putative alpha-amphiphilic helix from residue 29 to 47. A model is proposed in which this helix is thought to traverse the membrane in such a way that the C-terminal part of the protein, containing the epitope, is on the outside of the cell. Vesicle-fusion studies together with leucine-uptake experiments suggest that the immunity protein interacts with the putative receptor for lactococcin A, thus preventing pore formation by the bacteriocin.
制备了针对大肠杆菌麦芽糖结合蛋白与LciA(一种保护乳酸乳球菌免受细菌素乳酸乳球菌素A影响的免疫蛋白)融合体的单克隆抗体。其中一种针对融合蛋白LciA部分的抗体用于在乳酸乳球菌产生菌细胞中定位免疫蛋白。无论细胞是否产生乳酸乳球菌素A,LciA在胞质、膜相关和膜组分中的含量大致相等。该单克隆抗体与从产生免疫蛋白的菌株获得的外翻囊泡特异性反应。它不与同一菌株的内翻囊泡反应,也不与从同时产生LciA和乳酸乳球菌素A的菌株获得的外翻囊泡反应。此外,外部添加的乳酸乳球菌素A阻断了抗体与仅产生LciA的菌株获得的外翻囊泡之间的相互作用。LciA中的表位位于氨基酸残基60至80之间。由于该表位可被蛋白酶K从外翻囊泡中去除,它位于细胞外侧。免疫蛋白含有一个从残基29至47的推定α-两亲性螺旋。提出了一个模型,其中该螺旋被认为以这样一种方式穿过膜,即蛋白质的C末端部分(包含表位)位于细胞外侧。囊泡融合研究以及亮氨酸摄取实验表明,免疫蛋白与乳酸乳球菌素A的推定受体相互作用,从而防止细菌素形成孔道。