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Cyclical Expression of EBV Latent Membrane Protein 1 in EBV-Transformed B Cells Underpins Heterogeneity of Epitope Presentation and CD8+ T Cell Recognition

机译:EBV转化的B细胞中EBV潜在膜蛋白1的循环表达增强了抗原决定簇呈递和CD8 + T细胞识别的异质性

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CD8+ T cells specific for EBV latent cycle epitopes can be reactivated in vitro by stimulating with the autologous EBV-transformed B lymphoblastoid cell line (LCL). The resultant CD8+ clones kill epitope peptide-loaded targets, but frequently do not kill or show only low levels of lysis of the unmanipulated LCL in 5-h cytotoxicity assays. However, they reproducibly show clear LCL recognition in cytokine (IFN-γ) release assays and inhibit LCL outgrowth in long-term coculture assays. We show that this growth inhibition is not mediated by cytokines, but by slow killing detectable in extended cytotoxicity assays. The paradoxical earlier findings reflect the fact that cytokine assays are more sensitive indicators of Ag-specific recognition in situations in which the target population is heterogeneous at the single-cell level in terms of epitope display. Such heterogeneity exists within LCLs with, at any one time, subpopulations showing large differences in sensitivity to T cell detection. These differences are not cell cycle related, but correlate with differing levels of EBV latent membrane protein (LMP)1 expression at the single-cell level. In this study, LMP1 is not itself a CD8+ T cell target, but its expression enhances Ag-processing capacity and HLA class I expression. We propose that LMP1 levels fluctuate cyclically in individual cells and, over time, all cells within a LCL pass through a LMP1high T cell-detectable phase.
机译:可以通过用自体EBV转化的B淋巴母细胞系(LCL)刺激,在体外重新激活对EBV潜伏期表位具有特异性的CD8 + T细胞。所得的CD8 +克隆可杀死装载抗原决定簇肽的靶标,但在5小时的细胞毒性试验中,通常不会杀死未显示的LCL或仅显示出低水平的裂解。但是,它们在细胞因子(IFN-γ)释放试验中可再现地显示出清晰的LCL识别,并在长期共培养试验中抑制了LCL的生长。我们表明,这种生长抑制不是由细胞因子介导的,而是通过在延长的细胞毒性试验中可检测到的缓慢杀灭来实现的。自相矛盾的早期发现反映了这样一个事实:在表位展示方面,在目标人群在单细胞水平上是异质的情况下,细胞因子检测是Ag特异性识别的更敏感指标。这种异质性存在于LCL中,在任何时候,亚群在对T细胞检测的敏感性方面表现出很大差异。这些差异与细胞周期无关,但与单细胞水平的EBV潜伏膜蛋白(LMP)1表达水平不同相关。在这项研究中,LMP1本身并不是CD8 + T细胞的靶标,但其表达增强了Ag加工能力和HLA I类表达。我们提出,LMP1水平在单个细胞中周期性波动,并且随着时间的流逝,LCL中的所有细胞都通过LMP1high T细胞可检测相。

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