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EBV BILF1 通过其细胞质尾部进化,下调了多种 HLA Ⅰ类分子的细胞表面展示。

EBV BILF1 evolved to downregulate cell surface display of a wide range of HLA class I molecules through their cytoplasmic tail.

机构信息

Department of Medical Microbiology, University Medical Center Utrecht, 3584 CX Utrecht, The Netherlands.

出版信息

J Immunol. 2013 Feb 15;190(4):1672-84. doi: 10.4049/jimmunol.1102462. Epub 2013 Jan 11.

Abstract

Coevolution of herpesviruses and their hosts has driven the development of both host antiviral mechanisms to detect and eliminate infected cells and viral ploys to escape immune surveillance. Among the immune-evasion strategies used by the lymphocryptovirus (γ(1)-herpesvirus) EBV is the downregulation of surface HLA class I expression by the virally encoded G protein-coupled receptor BILF1, thereby impeding presentation of viral Ags and cytotoxic T cell recognition of the infected cell. In this study, we show EBV BILF1 to be expressed early in the viral lytic cycle. BILF1 targets a broad range of HLA class I molecules, including multiple HLA-A and -B types and HLA-E. In contrast, HLA-C was only marginally affected. We advance the mechanistic understanding of the process by showing that the cytoplasmic C-terminal tail of EBV BILF1 is required for reducing surface HLA class I expression. Susceptibility to BILF1-mediated downregulation, in turn, is conferred by specific residues in the intracellular tail of the HLA class I H chain. Finally, we explore the evolution of BILF1 within the lymphocryptovirus genus. Although the homolog of BILF1 encoded by the lymphocryptovirus infecting Old World rhesus primates shares the ability of EBV to downregulate cell surface HLA class I expression, this function is not possessed by New World marmoset lymphocryptovirus BILF1. Therefore, this study furthers our knowledge of the evolution of immunoevasive functions by the lymphocryptovirus genus of herpesviruses.

摘要

疱疹病毒与其宿主的共同进化促使宿主抗病毒机制的发展,以检测和清除受感染的细胞,以及病毒逃避免疫监视的策略。在逃避免疫的策略中,淋巴隐病毒(γ(1)-疱疹病毒)EBV 通过病毒编码的 G 蛋白偶联受体 BILF1 下调表面 HLA Ⅰ类的表达,从而阻碍病毒抗原的呈递和细胞毒性 T 细胞识别感染细胞。在这项研究中,我们表明 EBV BILF1 在病毒裂解周期的早期表达。BILF1 靶向多种 HLA Ⅰ类分子,包括多种 HLA-A 和 -B 型和 HLA-E。相比之下,HLA-C 仅受到轻微影响。我们通过显示 EBV BILF1 的细胞质 C 末端尾巴是减少表面 HLA Ⅰ类表达所必需的,从而推进了对该过程的机制理解。易感性取决于 HLA Ⅰ类 H 链细胞内尾巴的特定残基。最后,我们探索了 BILF1 在淋巴隐病毒属内的进化。尽管感染旧世界恒河猴的淋巴隐病毒编码的 BILF1 同源物具有与 EBV 下调细胞表面 HLA Ⅰ类表达的能力,但这种功能并不存在于新世界狨猴的淋巴隐病毒 BILF1 中。因此,这项研究进一步了解了疱疹病毒淋巴隐病毒属的免疫逃避功能的进化。

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