Pullen J K, Schook L B
J Immunol. 1986 Aug 15;137(4):1359-65.
C57BL/6 (H-2b) mice fail to express I-E molecules on the surface of their cells and thus are unable to respond to I-E-restricted antigens such as GL phi and cytochrome c. Previous experiments in our laboratory have involved developing a system for studying differentiation of bone marrow cells into mature macrophage to gain a better understanding of class II MHC gene expression and function. In this study, we have used this system to transfect the E alpha d gene (cosmid 17.2) into C57BL/6 bone marrow cells and subsequently observed I-E expression on bone marrow-derived macrophages (BMDM) after differentiation in vitro. By using a modified calcium phosphate protocol, we found that the optimal period for transfection of the bone marrow cells was after 2 days of culture in vitro. By using the anti-I-E monoclonal antibody (Ia.7) derived from hybridoma 14-4-4, we detected the I-E molecule on the surface of transfected macrophages by a radiobinding assay and immunoprecipitation. BMDM expressed the I-E product maximally at 5 days of differentiation, and expression then declined. Furthermore, we have found that the expression of the I-E molecule on transfected macrophage was dependent upon exposure to interferon-gamma. Expression of I-E molecules was also detected by the generation of an allogeneic response. Transfected BMDM were compared with (CB6)F1 BMDM for their ability to stimulate C57BL/6 T cells and they were found to be equally effective. By using these initial findings, we hope to further optimize the conditions for insertion and expression of class II MHC genes in bone marrow cells.
C57BL/6(H-2b)小鼠细胞表面无法表达I-E分子,因此无法对I-E限制性抗原(如GL phi和细胞色素c)产生反应。我们实验室之前的实验致力于开发一个系统,用于研究骨髓细胞向成熟巨噬细胞的分化,以更好地理解II类MHC基因的表达和功能。在本研究中,我们利用该系统将Eαd基因(粘粒17.2)转染到C57BL/6骨髓细胞中,随后观察体外分化后骨髓来源巨噬细胞(BMDM)上的I-E表达。通过使用改良的磷酸钙方案,我们发现骨髓细胞转染的最佳时期是在体外培养2天后。通过使用源自杂交瘤14-4-4的抗I-E单克隆抗体(Ia.7),我们通过放射结合测定和免疫沉淀检测转染巨噬细胞表面的I-E分子。BMDM在分化第5天时I-E产物表达最高,随后表达下降。此外,我们发现转染巨噬细胞上I-E分子的表达依赖于干扰素-γ的暴露。通过产生同种异体反应也检测到了I-E分子的表达。将转染的BMDM与(CB6)F1 BMDM刺激C57BL/6 T细胞的能力进行比较,发现它们同样有效。基于这些初步发现,我们希望进一步优化II类MHC基因在骨髓细胞中的插入和表达条件。