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单纯疱疹病毒 1 ICP22 通过抑制小鼠树突状细胞 CD80 的表达。

Herpes Simplex Virus 1 ICP22 Suppresses CD80 Expression by Murine Dendritic Cells.

机构信息

Center for Neurobiology and Vaccine Development, Ophthalmology Research, Department of Surgery, Cedars-Sinai Burns and Allen Research Institute, Los Angeles, California, USA.

Center for Neurobiology and Vaccine Development, Ophthalmology Research, Department of Surgery, Cedars-Sinai Burns and Allen Research Institute, Los Angeles, California, USA

出版信息

J Virol. 2019 Jan 17;93(3). doi: 10.1128/JVI.01803-18. Print 2019 Feb 1.

Abstract

Herpes simplex virus type 1 (HSV-1) has the ability to delay its clearance from the eye during ocular infection. Here, we show that ocular infection of mice with HSV-1 suppressed expression of the costimulatory molecule CD80 but not CD86 in the cornea. The presence of neutralizing anti-HSV-1 antibodies did not alleviate this suppression. At the cellular level, HSV-1 consistently downregulated the expression of CD80 by dendritic cells (DCs) but not by other antigen-presenting cells. Furthermore, flow cytometric analysis of HSV-1-infected corneal cells during a 7-day period reduced CD80 expression in DCs but not in B cells, macrophages, or monocytes. This suppression was associated with the presence of virus. Similar results were obtained using infected or transfected spleen cells or bone marrow-derived DCs. A combination of roscovitine treatment, transfection with immediate early genes (IE), and infection with a recombinant HSV-1 lacking the ICP22 gene shows the importance of ICP22 in downregulation of the CD80 promoter but not the CD86 promoter and At the mechanistic level, we show that the HSV-1 immediate early gene ICP22 binds the CD80 promoter and that this interaction is required for HSV-1-mediated suppression of CD80 expression. Conversely, forced expression of CD80 by ocular infection of mice with a recombinant HSV-1 exacerbated corneal scarring in infected mice. Taken together, these studies identify ICP22-mediated suppression of CD80 expression in dendritic cells as central to delayed clearance of the virus and limitation of the cytopathological response to primary infection in the eye. HSV-1-induced eye disease is a major public health problem. Eye disease is associated closely with immune responses to the virus and is exacerbated by delayed clearance of the primary infection. The immune system relies on antigen-presenting cells of the innate immune system to activate the T cell response. We found that HSV-1 utilizes a robust and finely targeted mechanism of local immune evasion. It downregulates the expression of the costimulatory molecule CD80 but not CD86 on resident dendritic cells irrespective of the presence of anti-HSV-1 antibodies. The effect is mediated by direct binding of HSV-1 ICP22, the product of an immediate early gene of HSV-1, to the promoter of CD80. This immune evasion mechanism dampens the host immune response and, thus, reduces eye disease in ocularly infected mice. Therefore, ICP22 may be a novel inhibitor of CD80 that could be used to modulate the immune response.

摘要

单纯疱疹病毒 1 型(HSV-1)具有在眼部感染期间延迟从眼部清除的能力。在这里,我们表明,HSV-1 对小鼠的眼部感染抑制了角膜中共刺激分子 CD80 的表达,但不抑制 CD86 的表达。存在中和抗 HSV-1 抗体并不能减轻这种抑制。在细胞水平上,HSV-1 一致地下调树突状细胞(DC)而不是其他抗原呈递细胞的 CD80 表达。此外,在 7 天期间对感染 HSV-1 的角膜细胞进行流式细胞术分析,导致 DC 中 CD80 的表达减少,但 B 细胞、巨噬细胞或单核细胞中 CD80 的表达没有减少。这种抑制与病毒的存在有关。使用感染或转染的脾细胞或骨髓来源的 DC 也获得了类似的结果。用罗司维亭处理、瞬时早期基因(IE)转染和感染缺乏 ICP22 基因的重组 HSV-1 的组合表明 ICP22 在下调 CD80 启动子但不下调 CD86 启动子方面的重要性,在机制水平上,我们表明 HSV-1 的瞬时早期基因 ICP22 结合 CD80 启动子,并且这种相互作用是 HSV-1 介导的 CD80 表达抑制所必需的。相反,通过用重组 HSV-1 对感染小鼠进行眼部感染,强制表达 CD80 会加剧感染小鼠的角膜瘢痕形成。总之,这些研究确定了 ICP22 介导的树突状细胞中 CD80 表达的抑制是病毒清除延迟和限制眼内初次感染的细胞病理学反应的核心。HSV-1 引起的眼部疾病是一个主要的公共卫生问题。眼部疾病与病毒的免疫反应密切相关,并因初次感染的清除延迟而加重。免疫系统依赖于先天免疫系统的抗原呈递细胞来激活 T 细胞反应。我们发现 HSV-1 利用了一种强大而精细的局部免疫逃避机制。它下调了常驻树突状细胞上共刺激分子 CD80 的表达,但不影响抗 HSV-1 抗体的存在。这种效应是由 HSV-1 ICP22 的直接结合介导的,HSV-1 ICP22 是 HSV-1 瞬时早期基因的产物,与 CD80 启动子结合。这种免疫逃避机制抑制了宿主的免疫反应,从而减少了眼部感染小鼠的眼部疾病。因此,ICP22 可能是一种新型的 CD80 抑制剂,可用于调节免疫反应。

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本文引用的文献

1
PD-L1/B7-H1 Inhibits Viral Clearance by Macrophages in HSV-1-Infected Corneas.
J Immunol. 2018 Jun 1;200(11):3711-3719. doi: 10.4049/jimmunol.1700417. Epub 2018 Apr 18.
2
HSV1 latent transcription and non-coding RNA: A critical retrospective.
J Neuroimmunol. 2017 Jul 15;308:65-101. doi: 10.1016/j.jneuroim.2017.03.002. Epub 2017 Mar 6.
3
The 3 facets of regulation of herpes simplex virus gene expression: A critical inquiry.
Virology. 2015 May;479-480:562-7. doi: 10.1016/j.virol.2015.02.036. Epub 2015 Mar 11.
4
Herpes simplex virus type 1 ICP0 induces CD83 degradation in mature dendritic cells independent of its E3 ubiquitin ligase function.
J Gen Virol. 2014 Jun;95(Pt 6):1366-1375. doi: 10.1099/vir.0.062810-0. Epub 2014 Mar 18.
5
6
Binding of HSV-1 glycoprotein K (gK) to signal peptide peptidase (SPP) is required for virus infectivity.
PLoS One. 2014 Jan 20;9(1):e85360. doi: 10.1371/journal.pone.0085360. eCollection 2014.
9
Herpes keratitis.
Prog Retin Eye Res. 2013 Jan;32:88-101. doi: 10.1016/j.preteyeres.2012.08.002. Epub 2012 Aug 27.

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