Tana T, Kamikawaji N, Savoie C J, Sudo T, Kinoshita Y, Sasazuki T
Department of Genetics, Medical Institute of Bioregulation, Kyushu University, Fukuoka, Japan.
J Hum Genet. 1998;43(1):14-21. doi: 10.1007/s100380050031.
Susceptibility to a series of autoimmune diseases is strongly associated with particular HLA class II alleles. Identification of T cell clones and antigenic epitopes bound by HLA class II molecules involved in autoimmune diseases is critical to understanding the etiology of these HLA class II-associated diseases. However, establishment of T cell clones in autoimmune diseases is difficult because the antigenic peptides are unknown. Peptide library methods which include all possible peptide sequences offer a potentially powerful tool for the detection of cross-reactive antigenic peptides recognized by T cells. Here, we reduced the number of peptides per mixture by utilizing the known binding motifs of peptides for the HLA-DRB10405 molecule and evaluated the effectiveness of this library design. Each library mixture evoked a strong proliferative response in the unprimed peripheral blood lymphocytes (PBL) from HLA-DRB10405-positive donors but little or no response in the PBL from HLA-DRB10405-negative donors. The library also detected antigenic peptides that activated three antigen-specific T cell lines restricted by HLA-DRB10405, with different specificities. The motif-based approach thus presents a powerful method for monitoring T cells in large, heterogeneous T cell populations and is useful for the identification of the mimic peptide epitopes of T cell lines and clones.
对一系列自身免疫性疾病的易感性与特定的 HLA II 类等位基因密切相关。鉴定参与自身免疫性疾病的 HLA II 类分子所结合的 T 细胞克隆和抗原表位对于理解这些 HLA II 类相关疾病的病因至关重要。然而,由于抗原肽未知,在自身免疫性疾病中建立 T 细胞克隆很困难。包含所有可能肽序列的肽库方法为检测 T 细胞识别的交叉反应性抗原肽提供了一个潜在的有力工具。在此,我们利用肽与 HLA - DRB10405 分子的已知结合基序减少了每个混合物中的肽数量,并评估了这种文库设计的有效性。每个文库混合物在 HLA - DRB10405 阳性供体的未致敏外周血淋巴细胞(PBL)中引发了强烈的增殖反应,但在 HLA - DRB10405 阴性供体的 PBL 中几乎没有反应。该文库还检测到了激活三种受 HLA - DRB10405 限制、具有不同特异性的抗原特异性 T 细胞系的抗原肽。因此,基于基序的方法为监测大量异质性 T 细胞群体中的 T 细胞提供了一种有力方法,并且对于鉴定 T 细胞系和克隆的模拟肽表位很有用。