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MHC I类分子H-2Dp通过抑制性受体Ly49A抑制小鼠自然杀伤细胞。

The MHC class I molecule H-2Dp inhibits murine NK cells via the inhibitory receptor Ly49A.

作者信息

Olsson-Alheim M Y, Sundbäck J, Kärre K, Sentman C L

机构信息

Microbiology and Tumor Biology Center, Karolinska Institute, Stockholm, Sweden.

出版信息

J Immunol. 1999 Jun 15;162(12):7010-4.

Abstract

MHC class I molecules strongly influence the phenotype and function of mouse NK cells. NK cell-mediated lysis is prevented through the interaction of Ly49 receptors on the effector cell with appropriate MHC class I ligands on the target cell. In addition, host MHC class I molecules have been shown to modulate the in vivo expression of Ly49 receptors. We have previously reported that H-2Dd and H-2Dp MHC class I molecules are able to protect (at the target cell level) from NK cell-mediated lysis and alter the NK cell specificity (at the host level) in a similar manner, although the mechanism behind this was not clear. In this study, we demonstrate that the expression of both H-2Dd and H-2Dp class I molecules in target cells leads to inhibition of B6 (H-2b)-derived Ly49A+ NK cells. This inhibition could in both cases be reversed by anti-Ly49A Abs. Cellular conjugate assays showed that Ly49A-expressing cells indeed bind to cells expressing H-2Dp. The expression of Ly49A and Ly49G2 receptors on NK cells was down-regulated in H-2Dp-transgenic (B6DP) mice compared with nontransgenic B6 mice. However, B6DP mice expressed significantly higher levels of Ly49A compared with H-2Dd-transgenic (D8) mice. We propose that both H-2Dd and H-2Dp MHC class I molecules can act as ligands for Ly49A.

摘要

MHC I类分子对小鼠自然杀伤(NK)细胞的表型和功能有强烈影响。效应细胞上的Ly49受体与靶细胞上适当的MHC I类配体相互作用,可阻止NK细胞介导的细胞溶解。此外,宿主MHC I类分子已被证明可调节Ly49受体的体内表达。我们之前报道过,H-2Dd和H-2Dp MHC I类分子能够(在靶细胞水平)保护细胞免受NK细胞介导的溶解,并以类似方式改变(在宿主水平)NK细胞的特异性,尽管其背后的机制尚不清楚。在本研究中,我们证明靶细胞中H-2Dd和H-2Dp I类分子的表达均会导致对源自B6(H-2b)的Ly49A+ NK细胞的抑制。在这两种情况下,这种抑制都可被抗Ly49A抗体逆转。细胞结合试验表明,表达Ly49A的细胞确实会与表达H-2Dp的细胞结合。与非转基因B6小鼠相比,H-2Dp转基因(B6DP)小鼠NK细胞上Ly49A和Ly49G2受体的表达下调。然而,与H-2Dd转基因(D8)小鼠相比,B6DP小鼠Ly49A的表达水平显著更高。我们提出,H-2Dd和H-2Dp MHC I类分子均可作为Ly49A的配体。

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