Hillstrom L M, Niederhuber J E
J Exp Med. 1983 Jun 1;157(6):2002-16. doi: 10.1084/jem.157.6.2002.
The primary in vitro antibody response to TNP-Ficoll was found to be under H-2-restricted Ir gene control. Strains B10(H-2b), B10.A(H-2a), and B10.S(9R) (H-2t4) were consistently low responders while strains D2.GD(H-2g2), B10.GD(H-2g2), and B10.S(H-2s) were high responders. The in vitro TNP-Ficoll response in congenic recombinant and F1 hybrid mice demonstrated the requirement for complementation of two independent Ir genes. One Ir gene mapped in or to the left of the I-A subregion with high responder alleles being s or d. The second Ir gene mapped to the right of the I-E subregion and required b or s alleles for complementation. These results were further supported by the ability to block the TNP-Ficoll response by appropriate anti-Ia serum pretreatment of the antigen-presenting macrophages. When a structurally different polysaccharide antigen TNP-dextran was used, an identical pattern of restriction was observed.
对TNP-菲可(TNP-Ficoll)的主要体外抗体反应被发现受H-2限制的Ir基因控制。B10(H-2b)、B10.A(H-2a)和B10.S(9R)(H-2t4)品系一直是低反应者,而D2.GD(H-2g2)、B10.GD(H-2g2)和B10.S(H-2s)品系是高反应者。同基因重组和F1杂交小鼠的体外TNP-菲可反应表明需要两个独立的Ir基因互补。一个Ir基因定位于I-A亚区或其左侧,高反应者等位基因为s或d。第二个Ir基因定位于I-E亚区右侧,需要b或s等位基因进行互补。通过对抗抗原呈递巨噬细胞进行适当的抗Ia血清预处理来阻断TNP-菲可反应的能力进一步支持了这些结果。当使用结构不同的多糖抗原TNP-葡聚糖时,观察到相同的限制模式。