首页> 外文期刊>Acta crystallographica. Section D, Structural biology. >Crystal structure of the post‐fusion core of the Human coronavirus 229E Human coronavirus 229E spike protein at 1.86?? resolution
【24h】

Crystal structure of the post‐fusion core of the Human coronavirus 229E Human coronavirus 229E spike protein at 1.86?? resolution

机译:晶体结构的融合的核心人类冠状病毒人类冠状病毒229 e 229 e峰值蛋白质1.86 ? ?

获取原文
获取原文并翻译 | 示例
           

摘要

Human coronavirus 229E (HCoV‐229E) usually causes mild upper respiratory infections in heathy adults, but may lead to severe complications or mortality in individuals with weakened immune systems. Virus entry of HCoV‐229E is mediated by its spike (S) protein, where the S1 domain facilitates attachment to host cells and the S2 domain is involved in subsequent fusion of the virus and host membranes. During the fusion process, two heptad repeats, HR1 and HR2, in the S2 domain assemble into a six‐helix membrane‐fusion structure termed the fusion core. Here, the complete fusion‐core structure of HCoV‐229E has been determined at 1.86?? resolution, representing the most complete post‐fusion conformation thus far among published human alphacoronavirus (α‐HCoV) fusion‐core structures. The overall structure of the HCoV‐229E fusion core is similar to those of SARS, MERS and HCoV‐NL63, but the packing of its 3HR1 core differs from those of SARS and MERS in that it contains more noncanonical `x' and `da' layers. Side‐by‐side electrostatic surface comparisons reveal that the electrostatic surface potentials are opposite in α‐HCoVs and β‐HCoVs at certain positions and that the HCoV‐229E surface also appears to be the most hydrophobic among the various HCoVs. In addition to the highly conserved hydrophobic interactions between HR1 and HR2, some polar and electrostatic interactions are also well preserved across different HCoVs. This study adds to the structural profiling of HCoVs to aid in the structure‐based design of pan‐coronavirus small molecules or peptides to inhibit viral fusion.
机译:人类冠状病毒229 e (HCoV 229 e)应承担的通常原因轻微的上呼吸道感染在灌木丛生的成人,但可能导致严重的并发症死亡率在抵抗力较弱的人系统。其峰值(S)的蛋白质,S1域促进对宿主细胞和S2域是参与后续的融合病毒和宿主细胞膜。过程中,两个七个重复,HR1上的HR2,S2域组装成一个六螺旋膜融合结构称为融合的核心。在这里,完全融合的核心结构HCoV量229 e已经被确定为1.86 ? ?分辨率,代表最完整后检测融合构象之间迄今为止出版人类alphacoronavirus(αHCoV应承担)融合的核心结构。HCoV量229 e融合核心是相似的非典,即,HCoV NL63,但包装的3 hr1上核心与非典和事情的不同之处在于它包含更多中的“x”和“哒”层。比较表明,静电表面势是相反的交互一些HCoVsα和βHCoVs应承担的特定的地理位置,HCoV 229 e表面似乎也是最疏水的各种HCoVs。守恒HR1上疏水相互作用和的HR2一些极地和静电交互也保存完好HCoVs不同。结构分析HCoVs帮助的结构基础设计的平底锅冠状病毒小分子或肽抑制病毒融合。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号