Hirose A, Kumagai J, Imahori K
J Biochem. 1976 Feb;79(2):305-11. doi: 10.1093/oxfordjournals.jbchem.a131073.
It has recently been found that so-called native colicin E3, which has been used for studies of its mode of action, is a complex of two kinds of proteins. The complex could be dissociated into the two components in SDS. These components were isolated by gel filtration of 1% SDS followed by treatment with Sowex-2 to remove bounds SDS. One component, characterized by its low molecular weight, prevented colicin E3-induced inhibition of poly(U)-dependent protein synthesis and was designated as immunity substance. The other component (protein A), which was of high molecular weight, had 100-fold higher in vitro ribosome-inactivating activity than native colicin E3, but had lower bacteriocidal activity. Colicin E3 was reconstituted from the two isolated protein components. The reconstituted colicin E3, when compared with protein A, showed a decrease in in vitro activity (inhibition of poly(U)-dependent protein synthesis), but had higher bacteriocidal activity in vivo. Thus complex formation of protein A with immunity substance should play and important role in the bacteriocidal action, but protein A itself might inactivate ribosomes in the interior of the sensitive cells.
最近发现,用于研究其作用方式的所谓天然大肠杆菌素E3是两种蛋白质的复合物。该复合物在十二烷基硫酸钠(SDS)中可解离为两种成分。通过用1% SDS进行凝胶过滤,然后用Sowex - 2处理以去除结合的SDS,分离出这些成分。一种成分分子量低,可阻止大肠杆菌素E3诱导的对聚尿苷酸(poly(U))依赖性蛋白质合成的抑制,被命名为免疫物质。另一种成分(蛋白质A)分子量高,其体外核糖体失活活性比天然大肠杆菌素E3高100倍,但杀菌活性较低。从这两种分离的蛋白质成分中重构了大肠杆菌素E3。重构后的大肠杆菌素E3与蛋白质A相比,体外活性(对poly(U)依赖性蛋白质合成的抑制)降低,但体内杀菌活性更高。因此,蛋白质A与免疫物质的复合物形成在杀菌作用中应起重要作用,但蛋白质A本身可能使敏感细胞内部的核糖体失活。