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Ebola Viral Glycoprotein Bound to Its Endosomal Receptor Niemann-Pick C1

机译:埃博拉病毒糖蛋白结合到其内体受体Niemann-Pick C1

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Filoviruses, including Ebola and Marburg, cause fatal hemorrhagic fever in humans and primates. Understanding how these viruses enter host cells could help to develop effective therapeutics. An endosomal protein, Niemann-Pick C1 (NPC1), has been identified as a necessary entry receptor for this process, and priming of the viral glycoprotein (GP) to a fusion-competent state is a prerequisite for NPC1 binding. Here, we have determined the crystal structure of the primed GP (GPcl) of Ebola virus bound to domain C of NPC1 (NPC1-C) at a resolution of 2.3 angstrom. NPC1-C utilizes two protruding loops to engage a hydrophobic cavity on head of GPcl. Upon enzymatic cleavage and NPC1-C binding, conformational change in the GPcl further affects the state of the internal fusion loop, triggering membrane fusion. Our data therefore provide structural insights into filovirus entry in the late endosome and the molecular basis for design of therapeutic inhibitors of viral entry.
机译:包括埃博拉病毒和马尔堡病毒在内的丝状病毒会导致人类和灵长类动物致命的出血热。了解这些病毒如何进入宿主细胞可能有助于开发有效的治疗方法。内体蛋白Niemann-Pick C1(NPC1)已被确定为该过程的必要进入受体,而将病毒糖蛋白(GP)引发至具有融合能力的状态是NPC1结合的前提条件。在这里,我们已经确定了埃博拉病毒的引发GP(GPcl)的晶体结构以2.3埃的分辨率绑定到NPC1(NPC1-C)的域C。 NPC1-C利用两个突出的环接合GPcl头部上的疏水腔。在酶促切割和NPC1-C结合后,GPcl中的构象变化进一步影响内部融合环的状态,从而触发膜融合。因此,我们的数据为晚期核内体中丝状病毒的进入提供了结构上的见识,并为病毒进入的治疗性抑制剂的设计提供了分子基础。

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