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Structural transitions in influenza haemagglutinin at membrane fusion pH

机译:膜融合pH的流感血凝素的结构转变

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Cryo-electron microscopy studies of the influenza haemagglutinin glycoprotein at the low pH of host endosomes reveals structural intermediates, offering a dynamic view of how the protein mediates membrane fusion.Infection by enveloped viruses involves fusion of their lipid envelopes with cellular membranes to release the viral genome into cells. For HIV, Ebola, influenza and numerous other viruses, envelope glycoproteins bind the infecting virion to cell-surface receptors and mediate membrane fusion. In the case of influenza, the receptor-binding glycoprotein is the haemagglutinin (HA), and following receptor-mediated uptake of the bound virus by endocytosis(1), it is the HA that mediates fusion of the virus envelope with the membrane of the endosome(2). Each subunit of the trimeric HA consists of two disulfide-linked polypeptides, HA1 and HA2. The larger, virus-membrane-distal, HA1 mediates receptor binding; the smaller, membrane-proximal, HA2 anchors HA in the envelope and contains the fusion peptide, a region that is directly involved in membrane interaction(3). The low pH of endosomes activates fusion by facilitating irreversible conformational changes in the glycoprotein. The structures of the initial HA at neutral pH and the final HA at fusion pH have been investigated by electron microscopy(4,5) and X-ray crystallography(6-8). Here, to further study the process of fusion, we incubate HA for different times at pH 5.0 and directly image structural changes using single-particle cryo-electron microscopy. We describe three distinct, previously undescribed forms of HA, most notably a 150 angstrom-long triple-helical coil of HA2, which may bridge between the viral and endosomal membranes. Comparison of these structures reveals concerted conformational rearrangements through which the HA mediates membrane fusion.
机译:在宿主内体的低pH下甲型血红素凝集素糖蛋白的冷冻电子显微镜揭示了结构中间体,提供了蛋白质介导膜融合的动态视图。由包膜病毒中的摄食涉及与细胞膜融合它们的脂质包膜以释放病毒膜释放病毒膜基因组进入细胞。对于艾滋病毒,埃博拉,流感和许多其他病毒,包膜糖蛋白将感染病毒蛋白与细胞表面受体结合并介导膜融合。在流感的情况下,受体结合的糖蛋白是血凝素(HA),并且在受体介导的受体介导的内吞作用的摄取后(1),它是介导病毒包膜与膜的融合的HA内体(2)。三聚体HA的每个亚基由两种二硫化物连接的多肽,Ha1和Ha 2组成。较大,病毒膜 - 远端,H81介导受体结合;在封套中较小,膜 - 近端HA2锚HA,含有融合肽,该区域直接参与膜相互作用(3)。通过促进糖蛋白的不可逆构象变化,胚乳的低pH激活融合。通过电子显微镜(4,5)和X射线晶体学(6-8)研究了中性pH下的初始HA和融合pH的最终HA的结构。这里,为了进一步研究融合过程,我们在pH 5.0的不同时间孵育HA,并使用单粒子冷冻电子显微镜直接图像结构变化。我们描述了三种不同以前未描述的HA,最符合的HA2的150埃长的三螺旋线圈,其可以在病毒和内体膜之间桥接。这些结构的比较揭示了HA介导膜融合的协调一致性重排。

著录项

  • 来源
    《Nature》 |2020年第7814期|150-153|共4页
  • 作者单位

    Francis Crick Inst Struct Biol Dis Proc Lab London England;

    Francis Crick Inst Struct Biol Dis Proc Lab London England;

    Francis Crick Inst Struct Biol Cells & Viruses Lab London England;

    Francis Crick Inst Struct Biol Dis Proc Lab London England;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:15:25

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