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Structures of Ebola and Reston Virus VP35 Oligomerization Domains and Comparative Biophysical Characterization in All Ebolavirus Species

机译:埃博拉和易燃病毒VP35寡聚化结构域的结构和所有埃博拉病毒物种的比较生物物理表征

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摘要

The multifunctional virion protein 35 (VP35) of ebolaviruses is a critical determinant of virulence and pathogenesis indispensable for viral replication and host innate immune evasion. Essential for VP35 function is homo-oligomerization via a coiled-coil motif. Here we report crystal structures of VP35 oligomerization domains from the prototypic Ebola virus (EBOV) and the non-pathogenic Reston virus (RESTV), together with a comparative biophysical characterization of the domains from all known species of the Ebolavirus genus. EBOV and RESTV VP35 oligomerization domains form bipartite parallel helix bundles with a canonical coiled coil in the N-terminal half and increased plasticity in the highly conserved C-terminal half. The domain assembles into trimers and tetramers in EBOV, whereas it exclusively forms tetramers in all other ebolavirus species. Substitution of coiled-coil leucine residues critical for immune antagonism leads to aberrant oligomerization. A conserved arginine involved in inter-chain salt bridges stabilizes the VP35 oligomerization domain and modulates between coiled-coil oligomeric states.
机译:埃博尔伐病毒的多官能病毒素蛋白35(VP35)是病毒复制和宿主先天免疫逃避的毒力和发病机制不可或缺的关键决定因素。 VP35功能必需通过卷绕线圈基序是同源寡聚化。在这里,我们将VP35寡聚病区的晶体结构从原型埃博拉病毒(EBOV)和非致病eston病毒(RESTV)一起报告VP35寡聚化域的晶体结构以及来自所有已知的eBolaVirus属的域的比较生物物理表征。 EBOV和RESTV VP35寡聚末端阳离子,在N末端的半末端卷曲线圈和高度保守的C末端的可塑性中,形成双链平行螺旋捆。该结构域组合成青铜中的三聚体和四聚体,而它专门在所有其他eBolaVirus物种中形成四聚体。卷绕线圈亮氨酸残基替代对于免疫拮抗作用至关重要,导致异常的低聚。参与链间盐桥的保守精氨酸稳定VP35寡聚化结构域并在卷绕线圈低聚状态之间调节。

著录项

  • 来源
    《Structure》 |2019年第1期|共22页
  • 作者单位

    Max Planck Inst Biochem Dept Mol Struct Biol Klopferspitz 18 D-82152 Martinsried Germany;

    Max Planck Inst Biochem Dept Mol Struct Biol Klopferspitz 18 D-82152 Martinsried Germany;

    Ist Zooprofilatt Abruzzo &

    Molise I-64100 Campo Boario Teramo Italy;

    Max Planck Inst Biochem Core Facil Klopferspitz 18 D-82152 Martinsried Germany;

    Max Planck Inst Biochem Dept Cellular Biochem Klopferspitz 18 D-82152 Martinsried Germany;

    Max Planck Inst Biochem Dept Mol Struct Biol Klopferspitz 18 D-82152 Martinsried Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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