Schryvers A B, Morris L J
Department of Microbiology and Infectious Diseases, University of Calgary, Alberta, Canada.
Infect Immun. 1988 May;56(5):1144-9. doi: 10.1128/iai.56.5.1144-1149.1988.
Lactoferrin-binding activity in Neisseria meningitidis was detected by a solid-phase binding assay with horseradish peroxidase-conjugated human lactoferrin (HRP-lactoferrin). Expression of lactoferrin-binding activity was regulated by the level of iron in the medium, so that growth in the presence of the iron chelator EDDA (ethylenediamine di-ortho-hydroxyphenylacetic acid) resulted in a greater than 350-fold increase in binding activity, which was reversed by addition of excess iron. A maximal level of expression could be obtained at reasonable culture densities by using either intermediate levels of EDDA or high levels of EDDA and moderate levels of complexed iron sources such as hemoglobin and transferrin. Competition binding assays demonstrated that the binding of lactoferrin was specific for human lactoferrin in that neither bovine lactoferrin, human transferrin, nor human hemoglobin was able to block binding of HRP-lactoferrin. The binding specificity for human lactoferrin correlated with growth studies in which human but not bovine lactoferrin could support the growth of iron-starved cells. Binding of lactoferrin was not dependent on its level of iron saturation, since iron-saturated lactoferrin and apolactoferrin were equally effective at blocking binding of HRP-lactoferrin in competitive binding assays. The lactoferrin-binding protein was identified as a 105,000-molecular-weight iron-regulated outer membrane protein in three different meningococcal strains by a batch affinity method with biotinylated human lactoferrin and streptavidin-agarose.
通过使用辣根过氧化物酶偶联的人乳铁蛋白(HRP-乳铁蛋白)的固相结合试验检测脑膜炎奈瑟菌中的乳铁蛋白结合活性。乳铁蛋白结合活性的表达受培养基中铁水平的调节,因此在铁螯合剂EDDA(乙二胺二邻羟基苯乙酸)存在下生长会导致结合活性增加超过350倍,添加过量铁可使其逆转。通过使用中等水平的EDDA或高水平的EDDA以及中等水平的复合铁源(如血红蛋白和转铁蛋白),在合理的培养密度下可获得最大表达水平。竞争结合试验表明,乳铁蛋白的结合对人乳铁蛋白具有特异性,因为牛乳铁蛋白、人转铁蛋白和人血红蛋白均不能阻断HRP-乳铁蛋白的结合。对人乳铁蛋白的结合特异性与生长研究相关,其中人乳铁蛋白而非牛乳铁蛋白能够支持缺铁细胞的生长。乳铁蛋白的结合不依赖于其铁饱和度水平,因为在竞争结合试验中,铁饱和乳铁蛋白和脱铁乳铁蛋白在阻断HRP-乳铁蛋白结合方面同样有效。通过使用生物素化的人乳铁蛋白和链霉亲和素-琼脂糖的批量亲和方法,在三种不同的脑膜炎球菌菌株中,乳铁蛋白结合蛋白被鉴定为一种分子量为105,000的铁调节外膜蛋白。