Fu Y, Yan G, Shi L, Faustman D
Immunobiology Laboratory, Massachusetts General Hospital, Harvard Medical School, Boston 02129, USA.
Ann N Y Acad Sci. 1998 Apr 15;842:138-55. doi: 10.1111/j.1749-6632.1998.tb09642.x.
Quantitative defects in the density of conformationally correct human lymphocyte antigen (HLA) class I complexes on the surface of lymphocytes are apparent in patients with diverse HLA-linked autoimmune diseases, including Type I diabetes and Sjögren's syndrome. First, HLA class I expression was investigated in individuals with two rare and genetically divergent polyglandular autoimmune diseases. Polyglandular failure patients whose disease showed HLA linkage, but not those whose disease was not HLA linked, exhibited decreased HLA class I expression on the surface of their lymphocytes as well as a reduced abundance of transcripts of the HLA-linked genes Tap1 and Tap2, both of which encode proteins that contribute to HLA class I processing. Second, lymphocytes from patients with insulin-dependent diabetes mellitus (IDDM), Sjögren's syndrome, Graves' disease, and Hashimoto's disease showed varying degrees of decreased abundance of mRNAs that encode Tap1, Tap2, Lmp2, or Lmp7 (the latter two proteins also contribute to HLA class I processing). Third, in twins discordant for IDDM, reduced transcript abundance was preferential to diabetic subjects. Fourth, functional assays of isolated diabetic proteasomes, the peptide cutting complex containing LMP2 and LMP7 proteins, revealed altered peptidase activity. These data suggest that defective transcription of HLA class I-processing genes could contribute to the quantitative defect in cell-surface expression in autoimmune lymphocytes of HLA-controlled disease.
在包括I型糖尿病和干燥综合征在内的多种与人类白细胞抗原(HLA)相关的自身免疫性疾病患者中,淋巴细胞表面构象正确的HLA I类复合物密度存在明显的定量缺陷。首先,对患有两种罕见且基因不同的多腺体自身免疫性疾病的个体进行了HLA I类表达研究。疾病显示与HLA连锁的多腺体功能衰竭患者,而非疾病与HLA不连锁的患者,其淋巴细胞表面的HLA I类表达降低,同时HLA连锁基因Tap1和Tap2的转录本丰度也降低,这两个基因都编码有助于HLA I类加工的蛋白质。其次,来自胰岛素依赖型糖尿病(IDDM)、干燥综合征、格雷夫斯病和桥本氏病患者的淋巴细胞显示,编码Tap1、Tap2、Lmp2或Lmp7(后两种蛋白质也有助于HLA I类加工)的mRNA丰度有不同程度的降低。第三,在患IDDM的双胞胎中,转录本丰度降低在糖尿病患者中更为常见。第四,对分离出的糖尿病蛋白酶体(含有LMP2和LMP7蛋白的肽切割复合物)的功能分析显示肽酶活性发生了改变。这些数据表明,HLA I类加工基因的转录缺陷可能导致HLA控制疾病的自身免疫淋巴细胞表面表达的定量缺陷。