Division of Clinical Research, Fred Hutchinson Cancer Research Center, Seattle, WA 98109-1024, USA.
J Immunol. 2010 Jun 1;184(11):6199-208. doi: 10.4049/jimmunol.1000078. Epub 2010 May 5.
HLA-F has low levels of polymorphism in humans and is highly conserved among primates, suggesting a conserved function in the immune response. In this study, we probed the structure of HLA-F on the surface of B lymphoblastoid cell lines and activated lymphocytes by direct measurement of peptide binding to native HLA-F. Our findings suggested that HLA-F is expressed independently of bound peptide, at least in regard to peptide complexity profiles similar to those of either HLA-E or classical MHC class I (MHC-I). As a further probe of native HLA-F structure, we used a number of complementary approaches to explore the interactions of HLA-F with other molecules, at the cell surface, intracellularly, and in direct physical biochemical measurements. This analysis demonstrated that HLA-F surface expression was coincident with MHC-I H chain (HC) expression and was downregulated upon perturbation of MHC-I HC structure. It was further possible to directly demonstrate that MHC-I would interact with HLA-F only when in the form of an open conformer free of peptide and not as a trimeric complex. This interaction was directly observed by coimmunoprecipitation and by surface plasmon resonance and indirectly on the surface of cells through coincident tetramer and MHC-I HC colocalization. These data suggest that HLA-F is expressed independently of peptide and that a physical interaction specific to MHC-I HC plays a role in the function of MHC-I HC expression in activated lymphocytes.
HLA-F 在人类中的多态性水平较低,在灵长类动物中高度保守,这表明它在免疫反应中具有保守的功能。在这项研究中,我们通过直接测量与天然 HLA-F 的肽结合来探测 B 淋巴母细胞系和活化淋巴细胞表面 HLA-F 的结构。我们的研究结果表明,HLA-F 的表达独立于结合的肽,至少在与 HLA-E 或经典 MHC I 类(MHC-I)相似的肽复杂性谱方面是如此。作为对天然 HLA-F 结构的进一步研究,我们使用了多种互补方法来研究 HLA-F 与其他分子在细胞表面、细胞内以及直接物理生化测量中的相互作用。该分析表明,HLA-F 的表面表达与 MHC-I H 链(HC)的表达一致,并且在 MHC-I HC 结构受到干扰时下调。进一步可以直接证明,MHC-I 仅在没有肽的开放构象形式下才能与 HLA-F 相互作用,而不是作为三聚体复合物。这种相互作用通过共免疫沉淀和表面等离子体共振直接观察到,并通过细胞表面上同时出现的四聚体和 MHC-I HC 共定位间接观察到。这些数据表明,HLA-F 的表达独立于肽,并且 MHC-I HC 的特定物理相互作用在活化淋巴细胞中 MHC-I HC 表达的功能中发挥作用。