Disulfide Bond-Mediated Dimerization of HLA-G on the Cell Surface

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 b...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2002-12, Vol.99 (25), p.16180-16185
Hauptverfasser: Boyson, Jonathan E., Erskine, Robert, Whitman, Mary C., Chiu, Michael, Lau, Julie M., Koopman, Louise A., Valter, Markus M., Angelisova, Pavla, Horejsi, Václav, Stromfinger, Jack L.
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Sprache:eng
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Zusammenfassung: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 transfectants 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.
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.212643199