Nepom B S, Schwarz D, Palmer J P, Nepom G T
Diabetes. 1987 Jan;36(1):114-7. doi: 10.2337/diab.36.1.114.
The HLA association with insulin-dependent diabetes mellitus is highest among individuals heterozygous for DR3 and DR4. To investigate potential mechanisms to account for this association, we performed two-dimensional gel-electrophoretic analysis of HLA molecules from DR3/4 heterozygous patients. These studies demonstrated hybrid molecular dimers corresponding to products of HLA-DQ genes linked to DR3 and DR4, i.e., the DQw2 and DQw3 genes, respectively. Two types of DQ molecules were found: immunoprecipitation by DQw3-specific monoclonal antibody 17.15 identified a DQw3 beta-chain associating with a DQw3 alpha-chain and a DQw3 beta-chain associating with a DQw2 alpha-chain. The identity of alpha- and beta-chains comprising these hybrid molecules was confirmed by HPLC peptide-map analysis. Several characteristic peptide peaks identified both DQw2 and DQw3 alpha-chains associated with DQw3 beta-chains. The formation of such DQ alpha (DQw2)-Dq beta (DQw3) dimers potentially contributes a direct molecular mechanism for HLA-associated contributions to disease in DR3/DR4 heterozygotes.
HLA与胰岛素依赖型糖尿病的关联在DR3和DR4杂合个体中最为显著。为了探究解释这种关联的潜在机制,我们对DR3/4杂合患者的HLA分子进行了二维凝胶电泳分析。这些研究显示出对应于与DR3和DR4连锁的HLA-DQ基因产物的杂交分子二聚体,即分别为DQw2和DQw3基因。发现了两种类型的DQ分子:用DQw3特异性单克隆抗体17.15进行免疫沉淀,鉴定出一种与DQw3α链相关的DQw3β链以及一种与DQw2α链相关的DQw3β链。通过HPLC肽图分析证实了构成这些杂交分子的α链和β链的身份。几个特征性肽峰鉴定出与DQw3β链相关的DQw2和DQw3α链。这种DQα(DQw2)-Dqβ(DQw3)二聚体的形成可能为DR3/DR4杂合子中HLA相关的疾病贡献提供了一种直接的分子机制。