HLA-E and HLA-G Expression on Porcine Endothelial Cells Inhibit Xenoreactive Human NK Cells Through CD94/NKG2-Dependent and -Independent Pathways

人类白细胞抗原 Janus激酶3 细胞生物学 HLA-G 生物 细胞培养 细胞毒性 分子生物学 化学 白细胞介素21 抗原 T细胞 免疫学 免疫系统 体外 生物化学 遗传学
作者
Hitomi Sasaki,Xiao-Chun Xu,T. Mohanakumar
出处
期刊:Journal of Immunology [American Association of Immunologists]
卷期号:163 (11): 6301-6305 被引量:62
标识
DOI:10.4049/jimmunol.163.11.6301
摘要

Human NK cells contribute a significant role to host defense as well as xenogeneic cytotoxicity. Previous studies using human 721.221 cell line have shown that peptides derived from the leader sequence of the HLA-G binds and up-regulates the surface expression of HLA-E molecules, which was considered to consequently provide negative signals to human NK cells. However, the direct role of HLA-G in inhibiting human NK cells remains controversial. In this study, we showed that the expression of HLA-G or HLA-E in porcine endothelial cells directly protected sensitive porcine cells from human NK cell-mediated xenogeneic cytotoxicity. Ab blocking assays using F(ab')2 of the HLA class I-specific mAb PA2.6 indicated that the protection was directly mediated by the expression of HLA-G and HLA-E on the porcine cells. The HLA-E-mediated protection was blocked by anti-human CD94 Ab. In addition, the engagement of HLA-E lead to the phosphorylation of the CD94/NKG2 complex and the recruitment of SH2 domain-containing protein phosphatase 1 (SHP-1) to the complex. Therefore, HLA-E protected porcine cells from xenoreactive human NK cells through a CD94/NKG2-dependent pathway. In contrast, HLA-G inhibited human NK cells in the absence of CD94/NKG2 phosphorylation or SHP-1 recruitment, and the inhibition was not blocked by anti-CD94 Ab. Therefore, HLA-G protected porcine cells from human NK cells through a CD94/NKG2-independent pathway. These results demonstrated that both HLA-E and HLA-G could directly inhibit human NK cells in the absence of other endogenous HLA class I molecules. These results also have practical implications in preventing xenograft rejection mediated by human NK cells.
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