van der Ley P, Burm P, Agterberg M, van Meersbergen J, Tommassen J
Department of Molecular Cell Biology, State University of Utrecht, The Netherlands.
Mol Gen Genet. 1987 Oct;209(3):585-91. doi: 10.1007/BF00331167.
To study structure-function relationships in the outer membrane pore proteins OmpC and PhoE of Escherichia coli K12, we have constructed a series of phoE-ompC hybrid genes in which DNA encoding part of one protein is replaced by the homologous part of the other gene. The hybrid gene products were incorporated normally into the outer membrane, allowing their functional characterization. Combined with previous studies, the present results permit the identification of regions involved in determining functions and properties in which the native PhoE and OmpC proteins differ, such as pore characteristics, receptor activity for phages and binding of monoclonal antibodies. Most of these properties were found to be determined by multiple regions clearly separated in the primary structure. The combined phage and antibody binding data have demonstrated that at least five distinct regions in PhoE and OmpC are exposed at the cell surface. The locations of these regions are in agreement with a previously proposed model for porin topology.
为了研究大肠杆菌K12外膜孔蛋白OmpC和PhoE的结构-功能关系,我们构建了一系列phoE-ompC杂交基因,其中一个蛋白的部分编码DNA被另一个基因的同源部分所取代。杂交基因产物正常整合到外膜中,从而可以对其进行功能表征。结合先前的研究,目前的结果使得能够鉴定出决定天然PhoE和OmpC蛋白不同功能和特性的区域,例如孔特征、噬菌体受体活性和单克隆抗体结合。发现这些特性中的大多数由一级结构中明显分开的多个区域决定。噬菌体结合和抗体结合数据共同表明,PhoE和OmpC中至少有五个不同区域暴露于细胞表面。这些区域的位置与先前提出的孔蛋白拓扑模型一致。