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首页> 外文期刊>International immunology. >The non-classical MHC class I molecule Qa-1(b) inhibits classical MHC class I-restricted cytotoxicity of cytotoxic T lymphocytes.
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The non-classical MHC class I molecule Qa-1(b) inhibits classical MHC class I-restricted cytotoxicity of cytotoxic T lymphocytes.

机译:非经典的I类MHC分子Qa-1(b)抑制经典的MHC I类限制的细胞毒性T淋巴细胞的细胞毒性。

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摘要

The CD94/NKG2A heterodimer is an inhibitory receptor expressed on a subset of mouse NK cells. CD94/NKG2A recognizes the non-classical MHC class I (class Ib) molecule Qa-1(b) and inhibits NK cytotoxicity. Qa-1(b) presents a peptide derived from the leader sequence of classical MHC class I molecules. Here, we examined the role of CD94/NKG2A in T cell-mediated cytotoxicity. Soluble tetrameric Qa-1(b) bound to almost all CD8(+), but not CD4(+), T cells. This binding seems to be mediated by CD8, because COS cells transfected with CD8 also bound Qa-1(b) tetramer. Therefore, the expression of CD94/NKG2 in T cells was further examined by single-cell RT-PCR. Most murine CD8(+) T cells constitutively expressed CD94 and NKG2A transcripts, whereas they were not detected in CD4(+) T cells. Co-expression of Qa-1(b) and D(k) on target cells significantly inhibited cytotoxicity of D(k)-specific cytotoxic T lymphocytes generated by mixed lymphocyte reaction, indicating that Qa-1(b) on antigen-presenting cells interacts with CD94/NKG2A on CD8 T cells and regulates classical MHC class I-restricted cytotoxic T cells. These results suggest a significant role of CD94/NKG2A as an inhibitory receptor on CD8(+) T cells.
机译:CD94 / NKG2A异二聚体是在小鼠NK细胞子集上表达的抑制性受体。 CD94 / NKG2A识别非经典的MHC I类(Ib类)分子Qa-1(b),并抑制NK细胞毒性。 Qa-1(b)提供了一种来自经典I类MHC分子前导序列的肽。在这里,我们检查了CD94 / NKG2A在T细胞介导的细胞毒性中的作用。可溶性四聚体Qa-1(b)与几乎所有CD8(+)结合,但不与CD4(+)T细胞结合。这种结合似乎是由CD8介导的,因为用CD8转染的COS细胞也结合了Qa-1(b)四聚体。因此,通过单细胞RT-PCR进一步检查了T细胞中CD94 / NKG2的表达。大多数鼠类CD8(+)T细胞组成性表达CD94和NKG2A转录本,而CD4(+)T细胞中未检测到它们。 Qa-1(b)和D(k)在靶细胞上的共表达显着抑制了混合淋巴细胞反应产生的D(k)特异性细胞毒性T淋巴细胞的细胞毒性,表明Qa-1(b)对抗原呈递细胞与CD8 T细胞上的CD94 / NKG2A相互作用并调节经典的MHC I类限制性细胞毒性T细胞。这些结果表明,CD94 / NKG2A作为CD8(+)T细胞上的抑制性受体具有重要作用。

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