Simpson J A, Chow J C, Baker J, Avdalovic N, Yuan S, Au D, Co M S, Vasquez M, Britt W J, Coelingh K L
Protein Design Labs, Inc., Mountain View, California 94043.
J Virol. 1993 Jan;67(1):489-96. doi: 10.1128/JVI.67.1.489-496.1993.
Seven neutralizing murine monoclonal antibodies specific for the glycoprotein H of human cytomegalovirus were produced and used to construct a topological map of two nonoverlapping antigenic sites that are bridged by a third antigenic site. Neutralization assays with 15 laboratory or clinical human cytomegalovirus strains indicated that the monoclonal antibodies recognize three antigenically variable and three conserved epitopes within the three antigenic sites. The variable-domain genes encoding monoclonal antibodies representing each of the three antigenic sites were cloned and sequenced, and molecular models of their binding sites were generated. Conformational differences in the antibody-binding sites suggested a structural basis for experimentally observed differences in gH epitope recognition.
制备了七种针对人巨细胞病毒糖蛋白H的中和性鼠单克隆抗体,并用于构建由第三个抗原位点桥接的两个不重叠抗原位点的拓扑图。对15株实验室或临床人巨细胞病毒毒株进行的中和试验表明,单克隆抗体识别三个抗原位点内的三个抗原可变表位和三个保守表位。克隆并测序了编码代表三个抗原位点中每一个的单克隆抗体的可变域基因,并生成了其结合位点的分子模型。抗体结合位点的构象差异为实验观察到的gH表位识别差异提供了结构基础。