Verhoef C, Benz R, Poon A P, Tommassen J
Eur J Biochem. 1987 Apr 1;164(1):141-5. doi: 10.1111/j.1432-1033.1987.tb11005.x.
Outer membrane pore protein OmpC was identified as the receptor for the temperate Escherichia coli phage HK253hrk. The part of OmpC protein recognized by the phage was identified by using hybrid proteins in which parts of OmpC protein are replaced by the corresponding parts of the related PhoE protein. In contrast to other OmpC-specific phages, HK253hrk recognizes a part of OmpC within the C-terminal 50 amino acids of the protein. E. coli strains lysogenic for HK253hrk produce reduced amounts of OmpC protein, and produce a new pore protein instead. Expression of this new protein was temperature-dependent, i.e. low at 30 degrees C. The functioning of this new pore protein was characterized both in vivo by studying the uptake of beta-lactam antibodies and in vitro after reconstitution of the protein in black lipid films. Its effective pore size was larger than that of the OmpF pores of E. coli B. The new porin appears to be cation-selective. A comparison with the selectivity of the known OmpC and OmpF pores of E. coli showed that the new pore has a higher selectivity than OmpF but is less selective than OmpC. The new pore protein appears to function in E. coli K12 lysogens as the receptor for the phages HK187, HK189 and HK332.
外膜孔蛋白OmpC被鉴定为温和型大肠杆菌噬菌体HK253hrk的受体。通过使用杂合蛋白来鉴定噬菌体识别的OmpC蛋白部分,其中OmpC蛋白的部分被相关的PhoE蛋白的相应部分所取代。与其他OmpC特异性噬菌体不同,HK253hrk识别该蛋白C端50个氨基酸内的OmpC部分。HK253hrk溶原性的大肠杆菌菌株产生的OmpC蛋白量减少,取而代之的是产生一种新的孔蛋白。这种新蛋白的表达是温度依赖性的,即在30℃时较低。通过研究β-内酰胺抗体的摄取在体内对这种新孔蛋白的功能进行了表征,并在将该蛋白重组到黑色脂质膜中后在体外进行了表征。其有效孔径大于大肠杆菌B的OmpF孔。这种新的孔蛋白似乎具有阳离子选择性。与大肠杆菌已知的OmpC和OmpF孔的选择性比较表明,新孔的选择性高于OmpF,但低于OmpC。新的孔蛋白似乎在大肠杆菌K12溶原菌中作为噬菌体HK187、HK189和HK332的受体发挥作用。