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H5N1 感染期间细胞毒性 T 细胞功能受到抑制和组织驻留记忆 T 细胞水平降低。

Suppression of Cytotoxic T Cell Functions and Decreased Levels of Tissue-Resident Memory T Cells during H5N1 Infection.

机构信息

Department of Microbiology, The University of Chicago, Chicago, Illinois, USA.

Cancer Immunology, Inflammation, and Tolerance Program, GRU Cancer Center, Augusta University, Augusta, Georgia, USA.

出版信息

J Virol. 2020 Apr 16;94(9). doi: 10.1128/JVI.00057-20.

Abstract

Seasonal influenza virus infections cause mild illness in healthy adults, as timely viral clearance is mediated by the functions of cytotoxic T cells. However, avian H5N1 influenza virus infections can result in prolonged and fatal illness across all age groups, which has been attributed to the overt and uncontrolled activation of host immune responses. Here, we investigate how excessive innate immune responses to H5N1 impair subsequent adaptive T cell responses in the lungs. Using recombinant H1N1 and H5N1 strains sharing 6 internal genes, we demonstrate that H5N1 (2:6) infection in mice causes higher stimulation and increased migration of lung dendritic cells to the draining lymph nodes, resulting in greater numbers of virus-specific T cells in the lungs. Despite robust T cell responses in the lungs, H5N1 (2:6)-infected mice showed inefficient and delayed viral clearance compared with H1N1-infected mice. In addition, we observed higher levels of inhibitory signals, including increased PD-1 and interleukin-10 (IL-10) expression by cytotoxic T cells in H5N1 (2:6)-infected mice, suggesting that delayed viral clearance of H5N1 (2:6) was due to the suppression of T cell functions Importantly, H5N1 (2:6)-infected mice displayed decreased numbers of tissue-resident memory T cells compared with H1N1-infected mice; however, despite the decreased number of tissue-resident memory T cells, H5N1 (2:6) was protected against a heterologous challenge from H3N2 virus (X31). Taken together, our study provides mechanistic insight for the prolonged viral replication and protracted illness observed in H5N1-infected patients. Influenza viruses cause upper respiratory tract infections in humans. In healthy adults, seasonal influenza virus infections result in mild disease. Occasionally, influenza viruses endemic in domestic birds can cause severe and fatal disease even in healthy individuals. In avian influenza virus-infected patients, the host immune system is activated in an uncontrolled manner and is unable to control infection in a timely fashion. In this study, we investigated why the immune system fails to effectively control a modified form of avian influenza virus. Our studies show that T cell functions important for clearing virally infected cells are impaired by higher negative regulatory signals during modified avian influenza virus infection. In addition, memory T cell numbers were decreased in modified avian influenza virus-infected mice. Our studies provide a possible mechanism for the severe and prolonged disease associated with avian influenza virus infections in humans.

摘要

季节性流感病毒感染在健康成年人中引起轻度疾病,因为细胞毒性 T 细胞的功能可及时清除病毒。然而,禽流感 H5N1 流感病毒感染可导致所有年龄段的患者出现延长和致命的疾病,这归因于宿主免疫反应的明显和不受控制的激活。在这里,我们研究了宿主对 H5N1 的过度先天免疫反应如何损害肺部随后的适应性 T 细胞反应。使用具有 6 个内部基因的重组 H1N1 和 H5N1 株,我们证明 H5N1(2:6)感染在小鼠中引起更高的刺激和肺树突状细胞向引流淋巴结的迁移增加,导致肺部中更多的病毒特异性 T 细胞。尽管 H5N1(2:6)感染的小鼠在肺部产生了强大的 T 细胞反应,但与 H1N1 感染的小鼠相比,它们的病毒清除效率较低且延迟。此外,我们观察到更高水平的抑制信号,包括 H5N1(2:6)感染的小鼠中细胞毒性 T 细胞表达的 PD-1 和白细胞介素 10(IL-10)增加,这表明 H5N1(2:6)的病毒清除延迟是由于 T 细胞功能受到抑制。重要的是,与 H1N1 感染的小鼠相比,H5N1(2:6)感染的小鼠中组织驻留记忆 T 细胞的数量减少;然而,尽管组织驻留记忆 T 细胞数量减少,但 H5N1(2:6)对 H3N2 病毒(X31)的异源攻击具有保护作用。总之,我们的研究为 H5N1 感染患者中观察到的病毒持续复制和延长的疾病提供了机制上的见解。流感病毒会引起人类上呼吸道感染。在健康成年人中,季节性流感病毒感染会导致轻度疾病。偶尔,在禽类中流行的流感病毒即使在健康个体中也会引起严重和致命的疾病。在禽流感病毒感染的患者中,宿主免疫系统以不受控制的方式被激活,并且无法及时控制感染。在这项研究中,我们研究了为什么免疫系统不能有效地控制一种改良形式的禽流感病毒。我们的研究表明,在改良的禽流感病毒感染期间,清除病毒感染细胞的 T 细胞功能受到更高的负调节信号的损害。此外,在改良的禽流感病毒感染的小鼠中,记忆 T 细胞数量减少。我们的研究为人类禽流感病毒感染相关的严重和长期疾病提供了一种可能的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fd7/7163117/5bed5ad3cbee/JVI.00057-20-f0001.jpg

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