Department of Life Sciences, Pohang University of Science and Technology, Pohang, Republic of Korea.
Organelle Network Research Center, Pohang University of Science and Technology, Pohang, Republic of Korea.
J Virol. 2019 Sep 30;93(20). doi: 10.1128/JVI.00662-19. Print 2019 Oct 15.
Proteoglycans function not only as structural components of the extracellular compartment but also as regulators of various cellular events, including cell migration, inflammation, and infection. Many microbial pathogens utilize proteoglycans to facilitate adhesion and invasion into host cells. Here we report a secreted form of a novel heparan sulfate proteoglycan that functions against virus infection. The expression of SPOCK2/testican-2 was significantly induced in virus-infected lungs or in interferon (IFN)-treated alveolar lung epithelial cells. Overexpression from a SPOCK2 expression plasmid alone or the treatment of cells with recombinant SPOCK2 protein efficiently blocked influenza virus infection at the step of viral attachment to the host cell and entry. Moreover, mice treated with purified SPOCK2 were protected against virus infection. Sialylated glycans and heparan sulfate chains covalently attached to the SPOCK2 core protein were critical for its antiviral activity. Neuraminidase (NA) of influenza virus cleaves the sialylated moiety of SPOCK2, thereby blocking its binding to the virus. Our data suggest that IFN-induced SPOCK2 functions as a decoy receptor to bind and block influenza virus infection, thereby restricting entry of the infecting virus into neighboring cells. Here we report a novel proteoglycan protein, testican-2/SPOCK2, that prevents influenza virus infection. Testican-2/SPOCK2 is a complex type of secreted proteoglycan with heparan sulfate GAG chains attached to the core protein. SPOCK2 expression is induced upon virus infection or by interferons, and the protein is secreted to an extracellular compartment, where it acts directly to block virus-cell attachment and entry. Treatment with purified testican-2/SPOCK2 protein can efficiently block influenza virus infection and We also identified the heparan sulfate moiety as a key regulatory module for this inhibitory effect. Based on its mode of action (cell attachment/entry blocker) and site of action (extracellular compartment), we propose testican-2/SPOCK2 as a potential antiviral agent that can efficiently control influenza virus infection.
蛋白聚糖不仅作为细胞外基质的结构成分发挥作用,还作为多种细胞事件的调节剂发挥作用,包括细胞迁移、炎症和感染。许多微生物病原体利用蛋白聚糖促进与宿主细胞的黏附和入侵。在这里,我们报告了一种新型硫酸乙酰肝素蛋白聚糖的分泌形式,它可以抵抗病毒感染。SPOCK2/testican-2 的表达在病毒感染的肺部或干扰素(IFN)处理的肺泡上皮细胞中显著诱导。单独从 SPOCK2 表达质粒过表达或用重组 SPOCK2 蛋白处理细胞可有效阻止流感病毒在病毒与宿主细胞附着和进入的步骤中的感染。此外,用纯化的 SPOCK2 处理的小鼠受到了病毒感染的保护。SPOCK2 核心蛋白上共价连接的唾液酸化糖链和硫酸乙酰肝素链对于其抗病毒活性至关重要。流感病毒的神经氨酸酶(NA)切割 SPOCK2 的唾液酸化部分,从而阻止其与病毒结合。我们的数据表明,IFN 诱导的 SPOCK2 作为诱饵受体发挥作用,结合并阻断流感病毒感染,从而限制感染病毒进入邻近细胞。在这里,我们报告了一种新型蛋白聚糖蛋白,即 testican-2/SPOCK2,它可以防止流感病毒感染。Testican-2/SPOCK2 是一种具有附着到核心蛋白上的硫酸乙酰肝素 GAG 链的复合分泌型蛋白聚糖。SPOCK2 表达在病毒感染或干扰素作用下诱导,并分泌到细胞外基质中,在那里直接作用以阻止病毒与细胞的附着和进入。用纯化的 testican-2/SPOCK2 蛋白处理可有效阻断流感病毒感染,我们还确定了肝素硫酸盐部分是这种抑制作用的关键调节模块。基于其作用模式(细胞附着/进入阻滞剂)和作用部位(细胞外基质),我们提出 testican-2/SPOCK2 作为一种有潜力的抗病毒剂,可以有效地控制流感病毒感染。