Britt W J
Virology. 1984 Jun;135(2):369-78. doi: 10.1016/0042-6822(84)90193-4.
The specificity of neutralizing antibodies for human cytomegalovirus (CMV) envelope proteins was studied by comparing the reactivity of human CMV immune sera with that of a group of CMV-specific monoclonal antibodies. Characterization of this group of monoclonal antibodies revealed that six antibodies bound intact virions, and four of these antibodies neutralized infectious virus in vitro. All of the monoclonal antibodies, as well as human immune sera, precipitated three virion glycoproteins of estimated molecular weights of 160-K 116K, and 55K. Human immune sera also precipitated proteins of estimated molecular weights of 200K, 145K, 100K, 66K, and 34K. The three envelope glycoproteins detected by both the neutralizing monoclonal antibodies and immune human sera were shown to exist as a covalently linked, disulfide-bonded protein complex within virions. This result provided an explanation for the reactivity with multiple proteins of such highly specific reagents as monoclonal antibodies. Furthermore, these findings suggested that determinant(s) detected by CMV-neutralizing antibodies were expressed by this complex of envelope proteins.
通过比较人巨细胞病毒(CMV)免疫血清与一组CMV特异性单克隆抗体的反应性,研究了针对人巨细胞病毒包膜蛋白的中和抗体的特异性。对这组单克隆抗体的特性分析表明,六种抗体可结合完整病毒体,其中四种抗体在体外可中和感染性病毒。所有单克隆抗体以及人免疫血清均可沉淀出三种估计分子量分别为160K、116K和55K的病毒体糖蛋白。人免疫血清还沉淀出估计分子量为200K、145K、100K、66K和34K的蛋白质。中和性单克隆抗体和人免疫血清检测到的三种包膜糖蛋白在病毒体内以共价连接、二硫键结合的蛋白质复合物形式存在。这一结果解释了诸如单克隆抗体等高度特异性试剂与多种蛋白质发生反应的原因。此外,这些发现表明,CMV中和抗体检测到的决定簇是由这种包膜蛋白复合物表达的。