首页> 美国卫生研究院文献>The Journal of Infectious Diseases >Ebola Virus Glycoprotein Promotes Enhanced Viral Egress by Preventing Ebola VP40 From Associating With the Host Restriction Factor BST2/Tetherin
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Ebola Virus Glycoprotein Promotes Enhanced Viral Egress by Preventing Ebola VP40 From Associating With the Host Restriction Factor BST2/Tetherin

机译:埃博拉病毒糖蛋白通过阻止埃博拉病毒VP40与宿主限制因子BST2 / Tetherin相关联来促进增强的病毒排放

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摘要

>Background. BST2/tetherin is an innate immune molecule with the unique ability to restrict the egress of human immunodeficiency virus (HIV) and other enveloped viruses, including Ebola virus (EBOV). Coincident with this discovery was the finding that the HIV Vpu protein down-regulates BST2 from the cell surface, thereby promoting viral release. Evidence suggests that the EBOV envelope glycoprotein (GP) also counteracts BST2, although the mechanism is unclear.>Results. We find that total levels of BST2 remain unchanged in the presence of GP, whereas surface BST2 is significantly reduced. GP is known to sterically mask surface receptors via its mucin domain. Our evaluation of mutant GP molecules indicate that masking of BST2 by GP is probably responsible for the apparent surface BST2 down-regulation; however, this masking does not explain the observed virus-like particle egress enhancement. We discovered that VP40 coimmunoprecipitates and colocalizes with BST2 in the absence but not in the presence of GP.>Conclusions. These results suggest that GP may overcome the BST2 restriction by blocking an interaction between VP40 and BST2. Furthermore, we have observed that GP may enhance BST2 incorporation into virus-like particles. Understanding this novel EBOV immune evasion strategy will provide valuable insights into the pathogenicity of this deadly pathogen.
机译:>背景。BST2/ tetherin是一种先天性免疫分子,具有独特的能力来限制人类免疫缺陷病毒(HIV)和其他包膜病毒(包括埃博拉病毒(EBOV))的散发。与此发现相一致的是,HIV Vpu蛋白下调了细胞表面的BST2,从而促进了病毒的释放。有证据表明,尽管机制尚不清楚,但EBOV包膜糖蛋白(GP)也可以抵消BST2。>结果。我们发现,存在GP时,BST2的总水平保持不变,而表面BST2明显降低。已知GP通过其粘蛋白结构域在空间上掩蔽表面受体。我们对突变GP分子的评估表明,GP对BST2的掩盖可能是表面BST2明显下调的原因。但是,这种掩盖不能解释观察到的病毒样颗粒外出增强。我们发现VP40在不存在GP的情况下与BST2发生共免疫沉淀和共定位。>结论。这些结果表明,GP可以通过阻止VP40与BST2之间的相互作用来克服BST2的限制。此外,我们已经观察到GP可以增强BST2掺入病毒样颗粒中。了解这种新颖的EBOV免疫逃避策略将为这种致命病原体的致病性提供有价值的见解。

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