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首页> 外文期刊>BMC Infectious Diseases >Upregulation of cell-surface mucin MUC15 in human nasal epithelial cells upon influenza A virus infection
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Upregulation of cell-surface mucin MUC15 in human nasal epithelial cells upon influenza A virus infection

机译:流感病毒感染对人鼻上皮细胞中细胞表面粘液MUC15的上调

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Cell-surface mucins are expressed in apical epithelial cells of the respiratory tract, and contribute a crucial part of the innate immune system. Despite anti-inflammatory or antiviral functions being revealed for certain cell-surface mucins such as MUC1, the roles of other mucins are still poorly understood, especially in viral infections. To further identify mucins significant in influenza infection, we screened the expression of mucins in human nasal epithelial cells infected by H3N2 influenza A virus. We found that the expression of MUC15 was significantly upregulated upon infection, and specific only to active infection. While MUC15 did not interact with virus particles or reduce viral replication directly, positive correlations were observed between MUC15 and inflammatory factors in response to viral infection. Given that the upregulation of MUC15 was only triggered late into infection when immune factors (including cytokines, chemokines, EGFR and phosphorylated ERK) started to peak and plateau, MUC15 may potentially serve an immunomodulatory function later during influenza viral infection. Our study revealed that MUC15 was one of the few cell-surface mucins induced during influenza infection. While MUC15 did not interact directly with influenza virus, we showed that its increase coincides with the peak of immune activation and thus MUC15 may serve an immunomodulatory role during influenza infection.
机译:细胞表面粘液在呼吸道的顶端上皮细胞中表达,并有助于先天免疫系统的关键部分。尽管对某些细胞表面粘液如MUC1揭示了抗炎或抗病毒功能,但其他粘蛋白的作用仍然尚不清楚,特别是在病毒感染中。为了进一步鉴定流感感染中显着的粘蛋白,我们筛选了H3N2流感感染的人鼻上皮细胞中粘蛋白的表达。我们发现MUC15的表达在感染后显着上调,并且仅针对活性感染。虽然MUC15没有与病毒颗粒相互作用或直接降低病毒复制,但在MUC15和炎症因子之间观察到阳性相关性,响应病毒感染。鉴于MUC15的上调仅在免疫因子(包括细胞因子,趋化因子,EGFR和磷酸化ERK)开始于峰和高原时触发感染后,MUC15可能在流感病毒感染后稍后潜在地用于免疫调节功能。我们的研究表明,MUC15是在流感感染期间诱导的少量细胞表面粘液之一。虽然MUC15没有与流感病毒直接相互作用,但我们表明,其增加与免疫激活的峰值一致,因此MUC15可以在流感感染期间发挥免疫调节作用。

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