Hershberg R M, Framson P E, Cho D H, Lee L Y, Kovats S, Beitz J, Blum J S, Nepom G T
Immunology and Diabetes Programs, Virginia Mason Research Center, Seattle, Washington 98101, USA.
J Clin Invest. 1997 Jul 1;100(1):204-15. doi: 10.1172/JCI119514.
Intestinal epithelial cells express a low level of HLA class II molecules constitutively, with elevated levels seen in the setting of mucosal inflammation including inflammatory bowel disease. The ability of intestinal epithelial cells to act as antigen presenting cells for alphabeta CD4(+) T lymphocytes was examined through a molecular analysis of the HLA class II antigen processing pathway. We have shown that intestinal epithelial cells contain abundant constitutive levels of the cathepsin proteases proven to function in HLA class II mediated antigen presentation. Activation of these cells by gamma-IFN induced the expression of invariant chain and HLA-DM alphabeta, thus facilitating the formation of compact, SDS-stable HLA- DR alphabeta heterodimers. Using HLA-DR-restricted T cells and retroviral mediated gene transfer of HLA-DR alleles into the intestinal epithelial cell lines HT-29 and T84, we demonstrated efficient antigen processing and presentation to CD4(+) T lymphocytes in the presence of the proinflammatory cytokine gamma-IFN. The class II processing pathway and presentation in the presence of gamma-IFN was indistinguishable from that observed with a conventional antigen presenting cell. Antigen processing also occurred in intestinal epithelial cells in the absence of gamma-IFN, and in contrast to that seen after stimulation with gamma-IFN, required high concentration of antigen and was not inhibited by the protease inhibitor leupeptin. These data suggest the use of two distinct pathways of HLA class II antigen processing in enterocytes with differential immunomodulatory properties in the presence or absence of mucosal inflammation.
肠上皮细胞组成性表达低水平的HLA II类分子,在包括炎症性肠病在内的粘膜炎症情况下水平会升高。通过对HLA II类抗原加工途径的分子分析,研究了肠上皮细胞作为αβ CD4(+) T淋巴细胞抗原呈递细胞的能力。我们已经表明,肠上皮细胞含有丰富的组织蛋白酶,其组成性水平已被证明在HLA II类介导的抗原呈递中发挥作用。γ干扰素激活这些细胞可诱导恒定链和HLA-DMαβ的表达,从而促进紧密的、SDS稳定的HLA-DRαβ异二聚体的形成。使用HLA-DR限制性T细胞以及通过逆转录病毒介导将HLA-DR等位基因转移到肠上皮细胞系HT-29和T84中,我们证明在促炎细胞因子γ干扰素存在的情况下,能有效地加工抗原并将其呈递给CD4(+) T淋巴细胞。在γ干扰素存在的情况下,II类加工途径和呈递与传统抗原呈递细胞所观察到的情况没有区别。在没有γ干扰素的情况下,肠上皮细胞中也会发生抗原加工,与γ干扰素刺激后所见情况相反,这需要高浓度抗原,并且不受蛋白酶抑制剂亮抑酶肽的抑制。这些数据表明,在存在或不存在粘膜炎症的情况下,肠细胞中使用两种不同的HLA II类抗原加工途径,具有不同的免疫调节特性。