Antoniou Antony N, Ford Stuart, Taurog Joel D, Butcher Geoffrey W, Powis Simon J
Division of Cell Biology and Immunology, School of Life Sciences, University of Dundee, Dundee DD1 5EH, United Kingdom.
J Biol Chem. 2004 Mar 5;279(10):8895-902. doi: 10.1074/jbc.M311757200. Epub 2003 Dec 18.
The human HLA-B27 class I molecule exhibits a strong association with the inflammatory arthritic disorder ankylosing spondylitis and other related arthropathies. Major histocompatibility complex class I heavy chains normally associate with beta(2)-microglobulin and peptide in the endoplasmic reticulum before transit to the cell surface. However, an unusual characteristic of HLA-B27 is its ability to form heavy chain homodimers through an unpaired cysteine at position 67 in the peptide groove. Homodimers have previously been detected within the ER and at the cell surface, but their mechanism of formation and role in disease remain undefined. Here we demonstrate, in the rat C58 thymoma cell line and in human HeLa cells transfected with HLA-B27, that homodimer formation involves not only cysteine at position 67 but also the conserved structural cysteine at position 164. We also show that homodimer formation can be induced in the non-disease-associated HLA class I allele HLA-A2 by slowing its assembly rate by incubation of cells at 26 degrees C, suggesting that homodimer formation in the endoplasmic reticulum may occur as a result of the slower folding kinetics of HLA-B27. Finally, we report an association between unfolded HLA-B27 molecules and immunoglobulin-binding protein at the cell surface.
人类HLA - B27 I类分子与炎性关节炎疾病强直性脊柱炎及其他相关关节病表现出强烈关联。主要组织相容性复合体I类重链通常在内质网中与β2 -微球蛋白和肽段结合,然后转运至细胞表面。然而,HLA - B27的一个不寻常特征是其能够通过肽槽中第67位的未配对半胱氨酸形成重链同二聚体。此前已在内质网和细胞表面检测到同二聚体,但其形成机制和在疾病中的作用仍不明确。在此,我们在大鼠C58胸腺瘤细胞系和转染了HLA - B27的人HeLa细胞中证明,同二聚体的形成不仅涉及第67位的半胱氨酸,还涉及第164位保守的结构半胱氨酸。我们还表明,通过在26℃孵育细胞来减缓非疾病相关的HLA I类等位基因HLA - A2的组装速率,可以诱导其形成同二聚体,这表明内质网中同二聚体的形成可能是由于HLA - B27较慢的折叠动力学所致。最后,我们报道了未折叠的HLA - B27分子与细胞表面免疫球蛋白结合蛋白之间的关联。