Lei H Y, Dorf M E, Waltenbaugh C
J Exp Med. 1982 Apr 1;155(4):955-67. doi: 10.1084/jem.155.4.955.
Antigen-specific suppression to poly(Glu50-Tyr50) (GT) is under the control of two complementary immune suppressor (Is) genes located in the major histocompatibility (H-2) complex of the mouse. Suppressor strains of mice produce both suppressor T (Ts) cells and Ts-derived suppressor factors (TsF) that bear antigenic determinants of the I-J subregion of the H-2 complex. Nonsuppressor strains of mice, on the other hand, are not suppressed by GT preimmunization. These nonsuppressor mice, however, can be classified according to those that lack the ability to make GT-specific T cell-derived suppressor factor (GT-TsF) after GT injection (i.e., H-2a, I-Jk mice) and those that lack the ability to be suppressed by the appropriate GT-TsF (i.e., H-2b,g2, I-Jb mice). In the present study, we demonstrate that (H-2a x H-2b,g2)F1 hybrid mice produce distinct GT-specific suppressor factors of both parental I-J haplotypes. Moreover, only the I-Jb-bearing GT-TsF derived from these F1 hybrid mice is able to induce second-order suppressor cells (Ts2). This is consistent with the observation that injection of GT-TsF1 derived from C57BL/6 (I-Jb) mice into A/J (I-Jk) mice leads to the production of an antigen-specific I-Jk GT-TsF2. Our results suggest that Is gene complementation occurs through a different cellular mechanism that was previously observed for Ir gene complementation. Further, we show that complementing (non-suppressor X nonsuppressor)F1 hybrid mice produce an I-Jb (and not an I-Jk) GT-TsF1 and an I-Jk (not an I-Jb) GT-TsF2, thus suggesting a heterogeneity of Ia loci within the I-J subregion. Data presented in the present study suggest that there may be even more heterogeneity within the I-J subregion than has has been heretofore reported with regard to I-J expression on Ts.
对聚(谷氨酸50-酪氨酸50)(GT)的抗原特异性抑制受位于小鼠主要组织相容性(H-2)复合体中的两个互补免疫抑制(Is)基因的控制。小鼠的抑制性品系产生抑制性T(Ts)细胞和携带H-2复合体I-J亚区抗原决定簇的Ts衍生抑制因子(TsF)。另一方面,非抑制性品系的小鼠不会被GT预免疫所抑制。然而,这些非抑制性小鼠可根据以下两类进行分类:一类是在注射GT后缺乏产生GT特异性T细胞衍生抑制因子(GT-TsF)的能力(即H-2a、I-Jk小鼠),另一类是缺乏被适当的GT-TsF抑制的能力(即H-2b、g2、I-Jb小鼠)。在本研究中,我们证明(H-2a×H-2b、g2)F1杂交小鼠产生了来自双亲I-J单倍型的不同GT特异性抑制因子。此外,仅来自这些F1杂交小鼠的携带I-Jb的GT-TsF能够诱导二级抑制细胞(Ts2)。这与以下观察结果一致:将源自C57BL/6(I-Jb)小鼠的GT-TsF1注射到A/J(I-Jk)小鼠中会导致产生抗原特异性的I-Jk GT-TsF2。我们的结果表明,Is基因互补是通过一种与先前观察到的Ir基因互补不同的细胞机制发生的。此外,我们表明互补的(非抑制性×非抑制性)F1杂交小鼠产生I-Jb(而非I-Jk)GT-TsF1和I-Jk(而非I-Jb)GT-TsF2,从而表明I-J亚区内Ia基因座的异质性。本研究中呈现的数据表明,I-J亚区内的异质性可能比迄今为止关于Ts上I-J表达所报道的还要多。