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Lung surfactant DPPG phospholipid inhibits vaccinia virus infection.

机译:肺表面活性剂DPPG磷脂抑制痘苗病毒感染。

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Vaccinia virus (VACV) was used as a surrogate of Variola virus (genus Orthopoxvirus), the causative agent of smallpox, to study orthopoxvirus infection via the respiratory airway. Lung surfactant, a physiological barrier to infection encountered by the virus, is predominantly composed of phospholipids whose role during orthopoxvirus infection has not been investigated. An attenuated Lister strain, derived from the traditional smallpox vaccine and the Western Reserve (WR) strain, lethal for mice infected by the respiratory route, were examined for their ability to bind various surfactant phospholipids. Dipalmitoyl phosphatidylglycerol (DPPG) was found to interact with both VACV strains. DPPG incorporated in small unilamellar vesicle (SUV-DPPG) inhibited VACV cell infection, unlike other phospholipids tested. Both pre-incubation of virus with SUV-DPPG and pretreatment of the cell with SUV-DPPG inhibited cell infection. This specific DPPG effect was shown to be concentration and time dependent and to prevent the first step of the viral cycle, i.e. virus cell attachment. Cryo-electron microscopy highlighted the interaction between the virus and SUV-DPPG. In the presence of the phospholipid, virus particles displayed a hedgehog-like appearance due to the attachment of lipid vesicles. Mice infected intranasally with VACV-WR pre-incubated with SUV-DPPG survived a lethal infection. These data suggest that DPPG in lung surfactant could reduce the amount of orthopoxvirus particles able to infect pneumocytes at the beginning of a respiratory poxvirus infection. The knowledge acquired during this study of virus-DPPG interactions may be used to develop novel chemotherapeutic strategies for smallpox.
机译:痘苗病毒(VACV)被用作天花的病原体天花病毒(Variola virus)的替代品,以研究经呼吸道感染正痘病毒。肺表面活性剂是病毒遇到的感染的生理屏障,主要由磷脂组成,其磷脂在正痘病毒感染中的作用尚未研究。研究了一种减毒的李斯特菌菌株,该菌株衍生自传统的天花疫苗和Western Reserve(WR)菌株,对呼吸道感染的小鼠致死,它们具有结合各种表面活性剂磷脂的能力。发现双棕榈酰磷脂酰甘油(DPPG)与两种VACV菌株都相互作用。与其他测试的磷脂不同,小单层囊泡(SUV-DPPG)中掺入的DPPG可抑制VACV细胞感染。用SUV-DPPG预孵育病毒和用SUV-DPPG预处理细胞均可抑制细胞感染。该特定的DPPG作用显示为浓度和时间依赖性,并防止病毒循环的第一步,即病毒细胞附着。低温电子显微镜强调了病毒与SUV-DPPG之间的相互作用。在磷脂的存在下,由于脂质囊泡的附着,病毒颗粒表现出类似刺猬的外观。经SUV-DPPG预孵育的经VACV-WR鼻内感染的小鼠幸免于致命感染。这些数据表明,肺表面活性剂中的DPPG可以减少呼吸道痘病毒感染开始时能够感染肺细胞的正痘病毒颗粒的数量。在病毒-DPPG相互作用的研究过程中获得的知识可用于开发新的天花化学治疗策略。

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