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对三硝基苯基-聚蔗糖反应中的主要组织相容性复合体限制的自身识别。B细胞的适应性分化与自身识别。

Major histocompatibility complex-restricted self-recognition in responses to trinitrophenyl-ficoll. Adaptive differentiation and self-recognition by B cells.

作者信息

Singer A, Hodes R J

出版信息

J Exp Med. 1982 Nov 1;156(5):1415-34. doi: 10.1084/jem.156.5.1415.

Abstract

The present study has examined the possibility of TNP-Ficoll-responsive B cells recognize the MHC determinants expressed by the accessory cells with which they interact for the generation of T cell-independent responses to "high" concentrations (10(-2) micrograms/ml) of TNP-Ficoll. In experiments with B cells from normal mice, it was found that MHC homology between the TNP-Ficoll-responsive B cells and accessory cells was not required. Nevertheless, TNP-Ficoll-responsive B cells from both fully allogeneic (A leads to B) and F1 leads to parent radiation bone marrow chimeras were triggered by accessory cells expressing host-type, but not uniquely donor-type, MHC determinants. The MHC gene products responsible for this apparent B cell-accessory restriction were encoded in the left side, i.e., the K and/or I-A region, of H-2. Such genetic restrictions were shown not to be imposed by the residual T cells contaminating the chimeric B cell populations because T cell reconstitution experiments using "unrestricted" F1 T cells from normal mice did not fully overcome the marked preference of the chimeric B cells for accessory cells expressing appropriate (host-type) MHC determinants. To directly determine whether TNP-Ficoll-responsive B cells from fully allogeneic chimeras are unable to recognize and cooperate with syngeneic strain A accessory cells, unfractionated spleen cells from A leads to B chimeras are co-cultured with unfractionated spleen cells from essentially syngeneic normal strain A mice. In such co-cultures, all the accessory cells express strain A MHC determinants, and all T cell requirements would be fulfilled by the T cells present in the normal strain A spleen cell population. After stimulation of the co-cultures with TNP-Ficoll, it was found that virtually all the PFC that had been generated in the co-cultures were derived from the normal B cell population, and essentially none were derived from the chimeric A leads to B B cell population. The failure of the chimeric B cells to be activated in such co-cultures was specifically due to their maturation in a fully allogeneic host environment because TNP-Ficoll-responsive B cells from A leads to (A X B) F1 chimeric mice were successfully triggered in co-cultures with normal spleen cells. These experiments demonstrated that the co-culture conditions did fulfill the MHC restriction requirements for activating TNP-Ficoll-responsive strain A B cells that had matured in a syngeneic or semi-syngeneic differentiation environment, but did not fulfill the MHC restriction requirements for activating TNP-Ficoll-responsive strain A B cells that had matured in a fully allogeneic differentiation environment. Taken together, these results demonstrate that (a) TNP-Ficoll-responsive B cells recognize the MHC determinants expressed by accessory cells, and (b) their MHC specificity is influenced by the MHC haplotype of the host environment in which the B cells had differentiated.

摘要

本研究探讨了对三硝基苯-聚蔗糖(TNP-Ficoll)有反应的B细胞识别与其相互作用以产生对“高”浓度(10⁻²微克/毫升)TNP-Ficoll的非T细胞依赖性反应的辅助细胞所表达的主要组织相容性复合体(MHC)决定簇的可能性。在用正常小鼠的B细胞进行的实验中,发现对TNP-Ficoll有反应的B细胞与辅助细胞之间不需要MHC同源性。然而,来自完全异基因(A→B)和F1→亲代辐射骨髓嵌合体的对TNP-Ficoll有反应的B细胞,是由表达宿主型而非仅供体型MHC决定簇的辅助细胞触发的。负责这种明显的B细胞-辅助细胞限制的MHC基因产物编码在H-2的左侧,即K和/或I-A区域。这种遗传限制并非由污染嵌合B细胞群体的残留T细胞所施加,因为使用来自正常小鼠的“无限制”F1 T细胞进行的T细胞重建实验并未完全克服嵌合B细胞对表达适当(宿主型)MHC决定簇的辅助细胞的明显偏好。为了直接确定来自完全异基因嵌合体的对TNP-Ficoll有反应的B细胞是否无法识别同基因A系辅助细胞并与之合作,将A→B嵌合体的未分离脾细胞与基本同基因的正常A系小鼠的未分离脾细胞共同培养。在这种共同培养中,所有辅助细胞都表达A系MHC决定簇,并且正常A系脾细胞群体中存在的T细胞将满足所有T细胞需求。用TNP-Ficoll刺激共同培养物后,发现共同培养物中产生的几乎所有空斑形成细胞(PFC)都来自正常B细胞群体,基本上没有来自嵌合的A→B B细胞群体。嵌合B细胞在这种共同培养中未能被激活,具体是由于它们在完全异基因宿主环境中成熟,因为来自A→(A×B)F1嵌合小鼠的对TNP-Ficoll有反应的B细胞在与正常脾细胞的共同培养中被成功触发。这些实验表明,共同培养条件确实满足了激活在同基因或半同基因分化环境中成熟的对TNP-Ficoll有反应的A系B细胞的MHC限制要求,但不满足激活在完全异基因分化环境中成熟的对TNP-Ficoll有反应的A系B细胞的MHC限制要求。综上所述,这些结果表明:(a)对TNP-Ficoll有反应的B细胞识别辅助细胞所表达的MHC决定簇;(b)它们的MHC特异性受B细胞分化所处宿主环境的MHC单倍型影响。

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