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低氧通过激活 mTOR-S6K 信号通路诱导 Andes 病毒感染的肺内皮细胞通透性和巨细胞反应。

Hypoxia induces permeability and giant cell responses of Andes virus-infected pulmonary endothelial cells by activating the mTOR-S6K signaling pathway.

机构信息

Department of Molecular Genetics and Microbiology, Stony Brook University, Stony Brook, New York, USA.

出版信息

J Virol. 2013 Dec;87(23):12999-3008. doi: 10.1128/JVI.02103-13. Epub 2013 Sep 25.

Abstract

Andes virus (ANDV) is a South American hantavirus that causes a highly lethal hantavirus pulmonary syndrome (HPS) characterized by hypoxia, thrombocytopenia, and vascular leakage leading to acute pulmonary edema. ANDV infects human pulmonary microvascular and lymphatic endothelial cells (MECs and LECs, respectively) and nonlytically enhances the permeability of interendothelial cell adherence junctions in response to vascular endothelial growth factor (VEGF). Recent findings also indicate that ANDV causes the formation of giant endothelial cells. Here, we demonstrate that hypoxic conditions alone enhance permeability and giant cell responses of ANDV-infected MECs and LECs through activation of the mTOR signaling pathway. In contrast to infection of cells with nonpathogenic Tula virus (TULV), we observed that exposure of ANDV-infected MECs and LECs to hypoxic conditions resulted in a 3- to 6-fold increase in monolayer permeability and the formation of giant cells 3× to 5× normal size. ANDV infection in combination with hypoxic conditions resulted in the enhancement of hypoxia-inducible factor 1α (HIF1α)-directed VEGF A, angiopoietin 4, and EGLN3 transcriptional responses. Constitutive mTOR signaling induces the formation of giant cells via phosphorylation of S6K, and mTOR regulates hypoxia and VEGF A-induced cellular responses. We found that S6K was hyperphosphorylated in ANDV-infected, hypoxia-treated MECs and LECs and that rapamycin treatment for 1 h inhibited mTOR signaling responses and blocked permeability and giant cell formation in ANDV-infected monolayers. These findings indicate that ANDV infection and hypoxic conditions enhance mTOR signaling responses, resulting in enhanced endothelial cell permeability and suggest a role for rapamycin in therapeutically stabilizing the endothelium of microvascular and lymphatic vessels during ANDV infection.

摘要

安第斯病毒(ANDV)是一种南美洲汉坦病毒,可引起高度致命的汉坦病毒肺综合征(HPS),其特征为缺氧、血小板减少和血管渗漏,导致急性肺水肿。ANDV 感染人肺微血管和淋巴管内皮细胞(分别为 MEC 和 LEC),并通过血管内皮生长因子(VEGF)非裂解地增强内皮细胞间黏附连接的通透性。最近的研究结果还表明,ANDV 导致巨内皮细胞的形成。在这里,我们证明单独的缺氧条件通过激活 mTOR 信号通路增强了 ANDV 感染的 MEC 和 LEC 的通透性和巨细胞反应。与感染非致病性图拉病毒(TULV)的细胞相反,我们观察到 ANDV 感染的 MEC 和 LEC 暴露于缺氧条件下导致单层通透性增加 3 到 6 倍,巨细胞形成是正常大小的 3 到 5 倍。ANDV 感染与缺氧条件相结合导致缺氧诱导因子 1α(HIF1α)指导的 VEGF A、血管生成素 4 和 EGLN3 转录反应的增强。组成型 mTOR 信号通过 S6K 的磷酸化诱导巨细胞的形成,mTOR 调节缺氧和 VEGF A 诱导的细胞反应。我们发现,在 ANDV 感染的缺氧处理的 MEC 和 LEC 中 S6K 被过度磷酸化,并且雷帕霉素治疗 1 小时抑制 mTOR 信号反应并阻断 ANDV 感染单层中的通透性和巨细胞形成。这些发现表明,ANDV 感染和缺氧条件增强 mTOR 信号反应,导致内皮细胞通透性增强,并表明雷帕霉素在 ANDV 感染期间在治疗上稳定微血管和淋巴管的内皮细胞方面具有作用。

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