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The Switch from Latent to Productive Infection in Epstein-Barr Virus-Infected B Cells Is Associated with Sensitization to NK Cell Killing▿

机译:爱泼斯坦-巴尔病毒感染的B细胞从潜伏感染向生产性感染的转变与致敏性杀伤NK细胞有关▿

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摘要

Following activation of Epstein-Barr virus (EBV)-infected B cells from latent to productive (lytic) infection, there is a concomitant reduction in the level of cell surface major histocompatibility complex (MHC) class I molecules and an impaired antigen-presenting function that may facilitate evasion from EBV-specific CD8+ cytotoxic T cells. In some other herpesviruses studied, most notably human cytomegalovirus (HCMV), evasion of virus-specific CD8+ effector responses via downregulation of surface MHC class I molecules is supplemented with specific mechanisms for evading NK cells. We now report that EBV differs from HCMV in this respect. While latently infected EBV-positive B cells were resistant to lysis by two NK lines and by primary polyclonal NK cells from peripheral blood, these effectors efficiently killed cells activated into the lytic cycle. Susceptibility to NK lysis coincided not only with downregulation of HLA-A, -B, and -C molecules that bind to the KIR family of inhibitory receptors on NK cells but also with downregulation of HLA-E molecules binding the CD94/NKG2A inhibitory receptors. Conversely, ULBP-1 and CD112, ligands for the NK cell-activating receptors NKG2D and DNAM-1, respectively, were elevated. Susceptibility of the virus-producing target cells to NK cell lysis was partially reversed by blocking ULBP-1 or CD112 with specific antibodies. These results highlight a fundamental difference between EBV and HCMV with regards to evasion of innate immunity.
机译:感染爱泼斯坦-巴尔病毒(EBV)的B细胞从潜伏感染转为生产性(裂解)感染后,细胞表面主要组织相容性复合物(MHC)I类分子的水平随之降低,抗原呈递功能受损可能有助于逃避EBV特异性CD8 +细胞毒性T细胞。在其他一些研究过的疱疹病毒中,最著名的是人类巨细胞病毒(HCMV),通过下调I类表面MHC分子来逃避病毒特异性CD8 +效应子反应,并补充了逃避NK细胞的特定机制。我们现在报告EBV在这方面与HCMV不同。虽然潜伏感染的EBV阳性B细胞对两条NK细胞系和外周血中的初级多克隆NK细胞具有抗裂解作用,但这些效应子有效杀死了进入裂解周期的细胞。 NK裂解的敏感性不仅与下调与NK细胞上的KIR抑制受体家族结合的HLA-A,-B和-C分子有关,还与与CD94 / NKG2A抑制受体结合的HLA-E分子的下调有关。相反,分别升高了NK细胞激活受体NKG2D和DNAM-1的配体ULBP-1和CD112。通过用特异性抗体阻断ULBP-1或CD112,部分逆转了产生病毒的靶细胞对NK细胞裂解的敏感性。这些结果突出了EBV和HCMV在逃避先天免疫方面的根本区别。

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