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Disulfide bond-mediated dimerization of HLA-G on the cell surface

机译:二硫键介导的HLA-G在细胞表面的二聚化

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摘要

HLA-G is a nonclassical class I MHC molecule with an unknown function and with unusual characteristics that distinguish it from other class I MHC molecules. Here, we demonstrate that HLA-G forms disulfide-linked dimers that are present on the cell surface. Immunoprecipitation of HLA-G from surface biotinylated transfec-tants using the anti-β2-microglobulin mAb BBM.1 revealed the presence of an ≈78-kDa form of HLA-G heavy chain that was reduced by using DTT to a 39-kDa form. Mutation of Cys-42 to a serine completely abrogated dimerization of HLA-G, suggesting that the disulfide linkage formed exclusively through this residue. A possible interaction between the HLA-G monomer or dimer and the KIR2DL4 receptor was also investigated, but no interaction between these molecules could be detected through several approaches. The cell-surface expression of dimerized HLA-G molecules may have implications for HLA-G/receptor interactions and for the search for specific receptors that bind HLA-G.
机译:HLA-G是一种非经典的I类MHC分子,其功能未知,具有与其他I类MHC分子不同的异常特性。在这里,我们证明HLA-G形成存在于细胞表面的二硫键连接的二聚体。使用抗β2-微球蛋白mAb BBM对表面生物素化的透明质酸进行HLA-G的免疫沉淀.1显示存在约78-kDa形式的HLA-G重链,通过使用DTT将其还原为39-kDa形式。 Cys-42突变为丝氨酸完全消除了HLA-G的二聚作用,表明二硫键仅通过此残基形成。还研究了HLA-G单体或二聚体与KIR2DL4受体之间可能的相互作用,但是通过几种方法都无法检测到这些分子之间的相互作用。二聚化的HLA-G分子的细胞表面表达可能对HLA-G /受体相互作用以及与HLA-G结合的特定受体的搜寻有影响。

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