Phillips N J, Davie J M
Department of Pathology, Washington University School of Medicine, St. Louis, MO 63110.
J Immunol. 1990 Aug 1;145(3):915-24.
Three cross-reactive idiotopes(Id), termed IdX, IdI-1, and Id5, that are present on free L chains from murine anti-group A streptococcal carbohydrate antibodies have been mapped; these Id distinguish between products of three homologous V kappa genes. For each determinant, sequence analysis of anti-streptococcal group A carbohydrate antibody V domains yielded small numbers of amino acids invariably associated with Id expression. Flow micro-fluorimetry was used to isolate three IdI-1- spontaneous mutants of the IdI-1+ hybridoma GAC 39; all had single amino acid changes in the L chain at position 60 and 77, all retained other Id, and all bound group A carbohydrate. Computer modeling was used to examine spatial relationships between Id. A number of the conserved Id5 and IdX residues cluster in the L chain framework region 1 around the first back loop connecting strands of the beta pleated sheets, and overlap at residue 15 (Id5, proline; IdX, leucine). This overlap accords with the mutually exclusive expression of Id5 and IdX. The IdI-1 loss variants have mutations of residues 60 or 77 on adjacent back loops, approximately 7.5 and 14 A from residue 15. Competitive inhibition of anti-IdX and anti-IdI-1 binding to antibodies expressing both Id can be attributed to steric hindrance. The framework back loops may be favored sites for cross-reactive Id expressed by products of a single V region gene. IdI-3a, an individual Id not associated with use of a particular gene segment, has been localized in part to residue 31 (hypervariable region 1) of the H chain.
已对来自鼠抗A组链球菌碳水化合物抗体的游离轻链上存在的三种交叉反应性独特型(Id)进行了定位,分别称为IdX、IdI-1和Id5;这些Id可区分三个同源Vκ基因的产物。对于每个决定簇,对抗A组链球菌碳水化合物抗体V结构域的序列分析产生了少量总是与Id表达相关的氨基酸。采用流式微量荧光法分离出IdI-1+杂交瘤GAC 39的三个IdI-1自发突变体;所有突变体轻链第60和77位均有单个氨基酸变化,均保留其他Id,且均能结合A组碳水化合物。利用计算机建模研究Id之间的空间关系。许多保守的Id5和IdX残基聚集在β折叠片层连接链的第一个反向环周围的轻链框架区域1中,并在第15位残基处重叠(Id5为脯氨酸;IdX为亮氨酸)。这种重叠与Id5和IdX的相互排斥表达一致。IdI-1缺失变体在相邻反向环上的第60或77位残基处发生突变,距第15位残基约7.5和14埃。抗IdX和抗IdI-1与同时表达两种Id的抗体结合的竞争性抑制可归因于空间位阻。框架反向环可能是单个V区域基因产物表达的交叉反应性Id的有利位点。IdI-3a是一个与特定基因片段使用无关的单个Id,已部分定位到重链的第31位残基(高变区1)。