Schreiber R D, Götze O, Müller-Eberhard H J
J Exp Med. 1976 Oct 1;144(4):1062-75. doi: 10.1084/jem.144.4.1062.
A novel component of the properdin system has been discribed which represents a heretofore unrecognized human serum protein. The protein has been tentatively termed the initiating factor (IF) because it functions in the initial reaction of the properdin pathway. IF is a 170,000 dalton beta-pseudoglobulin which is composed of two presumably identical 85,000 dalton chains linked by disulfide bonds. The protein reacts with antibody to nephritic factor, which is defined by its activity and is found in the serum of patients with certain nephritides. The activity of IF is heat stable. Upon treatment of serum with activators of the alternative pathway, the initial C3 convertase is assembled from IF, Factors D and C, C3, and magnesium without participation of properdin. It is the function of the enzyme to deposit C3b on the surface of the activator particles, thereby affording generation of the solid phase enzymes of the pathway, a process that is a prerequisite for properdin activation. By exposure to low pH, IF assumed the electrophoretic mobility of psi-globulin and acquired the ability to generate without activators a fluid phase C3 convertase in serum. Serum depleted of IF did not allow activation of the properdin pathway. Serum depleted of properdin did permit activation of the pathway and expression of cytolytic activity. These results raise the possibility that IF represents the recognition unit of the pathway.
已描述了备解素系统的一种新成分,它代表一种迄今未被认识的人血清蛋白。该蛋白被暂时命名为起始因子(IF),因为它在备解素途径的初始反应中起作用。IF是一种170,000道尔顿的β-假球蛋白,由两条可能相同的85,000道尔顿的链通过二硫键连接而成。该蛋白与抗肾炎因子抗体发生反应,抗肾炎因子由其活性定义,存在于某些肾炎患者的血清中。IF的活性对热稳定。用替代途径的激活剂处理血清后,初始C3转化酶由IF、D因子和C因子、C3以及镁组装而成,无需备解素参与。该酶的功能是将C3b沉积在激活剂颗粒表面,从而使该途径的固相酶得以产生,这一过程是备解素激活的先决条件。通过暴露于低pH值,IF呈现出ψ球蛋白的电泳迁移率,并获得了在无激活剂的情况下在血清中产生液相C3转化酶的能力。缺乏IF的血清不能激活备解素途径。缺乏备解素的血清确实允许该途径的激活和溶细胞活性的表达。这些结果增加了IF代表该途径识别单位的可能性。