首页> 美国卫生研究院文献>other >Novel Approach to Cell Surface Discrimination Between KIR2DL1 Subtypes and KIR2DS1 Identifies Hierarchies in NK Repertoire Education and Tolerance
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Novel Approach to Cell Surface Discrimination Between KIR2DL1 Subtypes and KIR2DS1 Identifies Hierarchies in NK Repertoire Education and Tolerance

机译:KIR2DL1亚型和KIR2DS1之间的细胞表面区分的新方法确定了NK曲目教育和宽容的层次结构。

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摘要

Cumulative activating and inhibitory receptor signaling controls the functional output of individual natural killer (NK) cells. Investigation of how competing signals impact response, however, has been hampered by the lack of available antibodies capable of distinguishing inhibitory and activating receptors with highly homologous ectodomains. Utilizing a novel combination of monoclonal antibodies with specificity for discrete inhibitory KIR2DL1 and activating KIR2DS1 allotypes found among 230 healthy donors, we investigated allele-specific receptor expression and function driven by KIR2DL1 and KIR2DS1 alleles. We found that co-expression of the HLA-C2 ligand diminishes KIR2DL1, but not KIR2DS1, cell surface staining, but does not impact the respective frequencies of KIR2DL1- and KIR2DS1-expressing cells within the NK repertoire. We can distinguish by flow cytometry NK cell populations expressing the most common KIR2DL1-C245 allotypes from those expressing the most common KIR2DL1-R245 allotypes, and we show that the informative differential binding anti-KIR2DL1/S1 clone 1127B is determined by amino acid residue T154. Although both KIR2DL1-C245 and KIR2DL1-R245 subtypes can be co-expressed in the same cell, NK cells preferentially express one or the other. Cells expressing KIR2DL1-C245 exhibited a lower KIR2DL1 cell surface density and lower missing-self reactivity in comparison to cells expressing KIR2DL1-R245. We found no difference, however, in sensitivity to inhibition or cell surface stability between the two KIR2DL1 isoforms, and both demonstrated similar expansion among NKG2C+ KIR2DL1+ NK cells in HCMV-seropositive healthy individuals. In addition to cell surface density of KIR2DL1, copy number of cognate HLA-C2 hierarchically impacted the effector capacity of both KIR2DL1+ cells and the tolerization of KIR2DS1+ NK cells. HLA-C2 tolerization of KIR2DS1+ NK cells could be overridden, however, by education via co-expressed self-specific inhibitory receptors, such as the heterodimer CD94/NKG2A. Our results demonstrate that effector function of NK cells expressing KIR2DL1 or KIR2DS1 is highly influenced by genetic variability and is calibrated by co-expression of additional NK receptors and cognate HLA-C2 ligands. These findings define the molecular conditions under which NK cells are activated or inhibited, potentially informing selection of donors for adoptive NK therapies.
机译:累积激活和抑制受体信号传导控制单个自然杀伤(NK)细胞的功能输出。然而,缺乏有效的抗体能够区分具有高度同源的胞外域的抑制性和激活性受体,阻碍了竞争信号如何影响反应的研究。利用对离散抑制性KIR2DL1具有特异性并激活230个健康供体中发现的KIR2DS1同种异型特异性的单克隆抗体的新型组合,我们研究了由KIR2DL1和KIR2DS1等位基因驱动的等位基因特异性受体表达和功能。我们发现,HLA-C2配体的共表达可减少KIR2DL1,但不会减少KIR2DS1细胞表面染色,但不会影响NK库中表达KIR2DL1和KIR2DS1的细胞的频率。我们可以通过流式细胞术区分表达最常见的KIR2DL1-C 245 同种异型的NK细胞群体与表达最常见的KIR2DL1-R 245 同种异型的NK细胞群体,并且我们发现差异结合抗KIR2DL1 / S1克隆1127B由氨基酸残基T 154 确定。尽管KIR2DL1-C 245 和KIR2DL1-R 245 亚型都可以在同一细胞中共表达,但NK细胞优先表达一种或另一种。与表达KIR2DL1-R 245 的细胞相比,表达KIR2DL1-C 245 的细胞具有较低的KIR2DL1细胞表面密度和较低的失踪自我反应性。但是,我们发现这两种KIR2DL1亚型对抑制的敏感性或细胞表面稳定性没有差异,并且在HCMV-N的NKG2C + KIR2DL1 + NK细胞之间均表现出相似的扩增。血清阳性的健康个体。除了KIR2DL1的细胞表面密度外,同源HLA-C2的拷贝数还分层影响KIR2DL1 + 细胞的效应子能力和KIR2DS1 + NK细胞的耐受性。 KIR2DS1 + NK细胞的HLA-C2耐受性可以被克服,但是,通过共表达的自我特异性抑制受体(如异二聚体CD94 / NKG2A)进行教育。我们的结果表明,表达KIR2DL1或KIR2DS1的NK细胞的效应子功能受遗传变异性的高度影响,并通过其他NK受体和相关的HLA-C2配体的共表达进行校准。这些发现确定了激活或抑制NK细胞的分子条件,可能提示选择过继性NK治疗的供体。

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