Al Moudallal Z, Briand J P, Van Regenmortel M H
EMBO J. 1982;1(8):1005-10. doi: 10.1002/j.1460-2075.1982.tb01285.x.
The antigenic structure of tobacco mosaic virus has been analysed by measuring the ability of nine monoclonal antibodies to distinguish between wild-type virus and 13 mutants showing single and double amino acid substitutions in the coat protein. Although the majority of antibodies detected those substitutions that were located at the outer surface of the virion, some of them also recognized conformation alterations induced by exchanges occurring deep inside the subunit. In the case of five mutants, the antibody reactivity was reduced compared with wild-type virus, while in the case of three others, it was significantly higher. Each monoclonal antibody possessed a unique discrimination pattern with respect to the different substitutions. The simultaneous presence of two exchanges led to the complete disappearance of any binding with six of the nine antibodies and to reduced binding with three others. The superior discriminatory capacity of monoclonal antibodies compared with polyclonal antisera was demonstrated by the fact that three exchanges not detected with antisera were found to alter the antigenicity when tested with monoclonal antibodies.
通过测定九种单克隆抗体区分野生型病毒和13种在外壳蛋白中显示单氨基酸和双氨基酸替换的突变体的能力,对烟草花叶病毒的抗原结构进行了分析。尽管大多数抗体检测到了位于病毒粒子外表面的那些替换,但其中一些抗体也识别由亚基内部深处发生的交换所诱导的构象改变。在五个突变体的情况下,与野生型病毒相比,抗体反应性降低,而在另外三个突变体的情况下,抗体反应性显著更高。每种单克隆抗体对于不同的替换都具有独特的鉴别模式。两种交换同时存在导致九种抗体中的六种完全失去任何结合能力,另外三种抗体的结合能力降低。单克隆抗体与多克隆抗血清相比具有更强的鉴别能力,这一事实体现在:用抗血清未检测到的三种交换在用单克隆抗体检测时被发现改变了抗原性。