Santos Susana G, Lynch Sarah, Campbell Elaine C, Antoniou Antony N, Powis Simon J
Bute Medical School, Westburn Lane, University of St Andrews, Fife, UK.
Arthritis Res Ther. 2008;10(4):R100. doi: 10.1186/ar2492. Epub 2008 Aug 29.
Ankylosing spondylitis (AS) is a severe, chronic inflammatory arthritis, with a strong association to the human major histocompatibilty complex (MHC) class I allele human leucocyte antigen (HLA) B27. Disulfide-linked HLA-B27 heavy-chain homodimers have been implicated as novel structures involved in the aetiology of AS. We have studied the formation of HLA-B27 heavy-chain homodimers in human dendritic cells, which are key antigen-presenting cells and regulators of mammalian immune responses.
Both an in vitro dendritic-like cell line and monocyte-derived dendritic cells from peripheral blood were studied. The KG-1 dendritic-like cell line was transfected with HLA-B27 cDNA constructs, and the cellular distribution, intracellular assembly and ability of HLA-B27 to form heavy-chain homodimers was compared with human monocyte-derived dendritic cells after stimulation with bacterial lipopolysaccharide (LPS).
Immature KG-1 cells expressing HLA-B27 display an intracellular source of MHC class I heavy-chain homodimers partially overlapping with the Golgi bodies, but not the endoplasmic reticulum, which is lost at cell maturation with phorbyl-12-myristate-13-acetate (PMA) and ionomycin. Significantly, the formation of HLA-B27 homodimers in transfected KG-1 cells is induced by maturation, with a transient induction also seen in LPS-stimulated human monocyte-derived dendritic cells expressing HLA-B27. The weak association of wildtype HLA-B2705 with the transporter associated with antigen processing could also be enhanced by mutation of residues at position 114 and 116 in the peptide-binding groove to those present in the HLA-B2706 allele.
We have demonstrated that HLA-B27 heavy-chain homodimer formation can be induced by dendritic cell activation, implying that these novel structures may not be displayed to the immune system at all times. Our data suggests that the behaviour of HLA-B27 on dendritic cells may be important in the study of inflammatory arthritis.
强直性脊柱炎(AS)是一种严重的慢性炎症性关节炎,与人类主要组织相容性复合体(MHC)I类等位基因人类白细胞抗原(HLA)B27密切相关。二硫键连接的HLA - B27重链同二聚体被认为是参与AS病因的新结构。我们研究了人类树突状细胞中HLA - B27重链同二聚体的形成,这些细胞是关键的抗原呈递细胞和哺乳动物免疫反应的调节因子。
研究了体外树突状样细胞系和外周血单核细胞来源的树突状细胞。用HLA - B27 cDNA构建体转染KG - 1树突状样细胞系,并将其与细菌脂多糖(LPS)刺激后的人类单核细胞来源的树突状细胞在HLA - B27的细胞分布、细胞内组装以及形成重链同二聚体的能力方面进行比较。
表达HLA - B27的未成熟KG - 1细胞显示出细胞内MHC I类重链同二聚体的来源,部分与高尔基体重叠,但不与内质网重叠,在用佛波醇 - 12 - 肉豆蔻酸酯 - 13 - 乙酸酯(PMA)和离子霉素诱导细胞成熟时这种现象消失。值得注意的是,转染的KG - 1细胞中HLA - B27同二聚体的形成由成熟诱导,在表达HLA - B27的LPS刺激的人类单核细胞来源的树突状细胞中也观察到短暂诱导。通过将肽结合槽中第114和116位的残基突变为HLA - B2706等位基因中的残基,野生型HLA - B2705与抗原加工相关转运体的弱结合也可得到增强。
我们已经证明树突状细胞激活可诱导HLA - B27重链同二聚体的形成,这意味着这些新结构可能并非始终展示给免疫系统。我们的数据表明HLA - B27在树突状细胞上的行为在炎症性关节炎研究中可能很重要。