Parhami-Seren B, Wysocki L, Margolies M N
Department of Surgery, Massachusetts General Hospital, Boston.
J Immunol. 1989 Dec 15;143(12):4090-7.
Murine A/J anti-p-azophenylarsonate (Ars) antibodies sharing a predominant idiotype are encoded by a single combination of germ-line V region gene segments. The dominance of this idiotype among secondary immune response anti-Ars antibodies has been explained by the Ag-driven selection of favorable somatic mutants of this gene segment combination, associated with an intrinsic Ars-affinity of the germ-line V region higher than that of other possible combinations. To determine the effect of junctional diversity upon affinity for Ag, independently of somatic mutation, we determined the V region sequences and affinity for Ars of five primary response antibodies. These antibodies share identical unmutated V regions but differ only at the D gene junctions. Among the five antibodies, Ars-affinity differed up to 10-fold depending upon the identity of the amino acid residues at the VH-D and the D-JH junctions. The combination of junctional residues observed in two primary response antibodies with relatively low Ars-affinity has not been observed among secondary response antibodies. Thus the identity of junctional residues resulting from gene rearrangement prior to antigen stimulation must be taken into account in hypotheses which account for idiotype dominance by selection on the basis of affinity.
具有主要独特型的小鼠A/J抗对氨基苯砷酸盐(Ars)抗体由种系V区基因片段的单一组合编码。这种独特型在二次免疫应答抗Ars抗体中的优势已通过该基因片段组合的有利体细胞突变体的抗原驱动选择来解释,这与种系V区高于其他可能组合的内在Ars亲和力相关。为了确定连接多样性对Ag亲和力的影响,而不考虑体细胞突变,我们测定了五种初次应答抗体的V区序列和对Ars的亲和力。这些抗体共享相同的未突变V区,但仅在D基因连接处不同。在这五种抗体中,根据VH-D和D-JH连接处氨基酸残基的同一性,Ars亲和力相差高达10倍。在二次应答抗体中未观察到在两种具有相对低Ars亲和力的初次应答抗体中观察到的连接残基组合。因此,在基于亲和力选择来解释独特型优势的假说中,必须考虑抗原刺激前基因重排产生的连接残基的同一性。