《CELL,6月17日,Cryo-EM structures of HKU2 and SADS-CoV spike glycoproteins provide insights into coronavirus evolution》

  • 来源专题:COVID-19科研动态监测
  • 编译者: xuwenwhlib
  • 发布时间:2020-06-19
  • Cryo-EM structures of HKU2 and SADS-CoV spike glycoproteins provide insights into coronavirus evolution

    Jinfang Yu, Shuyuan Qiao, Runyu Guo & Xinquan Wang

    Nature Communications volume 11, Article number: 3070 (2020)

    Abstract

    Porcine coronavirus SADS-CoV has been identified from suckling piglets with severe diarrhea in southern China in 2017. The SADS-CoV genome shares ~95% identity to that of bat α-coronavirus HKU2, suggesting that SADS-CoV may have emerged from a natural reservoir in bats. Here we report the cryo-EM structures of HKU2 and SADS-CoV spike (S) glycoprotein trimers at 2.38 Å and 2.83 Å resolution, respectively. We systematically compare the domains of HKU2 spike with those of α-, β-, γ-, and δ-coronavirus spikes, showing that the S1 subunit N- and C-terminal domains of HKU2/SADS-CoV are ancestral domains in the evolution of coronavirus spike proteins. The connecting region after the fusion peptide in the S2 subunit of HKU2/SADS-CoV adopts a unique conformation. These results structurally demonstrate a close evolutionary relationship between HKU2/SADS-CoV and β-coronavirus spikes and provide insights into the evolution and cross-species transmission of coronaviruses.

  • 原文来源:https://www.cell.com/trends/pharmacological-sciences/fulltext/S0165-6147(20)30143-7
相关报告
  • 《Nature,6月17日,Cryo-EM structures of HKU2 and SADS-CoV spike glycoproteins provide insights into coronavirus evolution》

    • 来源专题:COVID-19科研动态监测
    • 编译者:xuwenwhlib
    • 发布时间:2020-06-19
    • Cryo-EM structures of HKU2 and SADS-CoV spike glycoproteins provide insights into coronavirus evolution Jinfang Yu, Shuyuan Qiao, Runyu Guo & Xinquan Wang Nature Communications volume 11, Article number: 3070 (2020) Abstract Porcine coronavirus SADS-CoV has been identified from suckling piglets with severe diarrhea in southern China in 2017. The SADS-CoV genome shares ~95% identity to that of bat α-coronavirus HKU2, suggesting that SADS-CoV may have emerged from a natural reservoir in bats. Here we report the cryo-EM structures of HKU2 and SADS-CoV spike (S) glycoprotein trimers at 2.38 Å and 2.83 Å resolution, respectively. We systematically compare the domains of HKU2 spike with those of α-, β-, γ-, and δ-coronavirus spikes, showing that the S1 subunit N- and C-terminal domains of HKU2/SADS-CoV are ancestral domains in the evolution of coronavirus spike proteins. The connecting region after the fusion peptide in the S2 subunit of HKU2/SADS-CoV adopts a unique conformation. These results structurally demonstrate a close evolutionary relationship between HKU2/SADS-CoV and β-coronavirus spikes and provide insights into the evolution and cross-species transmission of coronaviruses.
  • 《6月17日_清华大学研究称HKU2和SADS-CoV刺突糖蛋白的低温电镜结构为冠状病毒的进化提供了新的认识》

    • 来源专题:COVID-19科研动态监测
    • 编译者:zhangmin
    • 发布时间:2020-06-19
    • 1.时间:2020年6月17日 2.机构或团队:清华大学 3.事件概要 清华大学的科研人员在期刊Nature communications在线发表题为“Cryo-EM structures of HKU2 and SADS-CoV spike glycoproteins provide insights into coronavirus evolution”的文章。 文章指出,2017年在中国南方地区患有严重腹泻的乳猪中鉴定出猪冠状病毒SADS-CoV。SADS-CoV基因组与蝙蝠α-冠状病毒HKU2有95%的一致性,这表明SADS-CoV可能是从蝙蝠自然宿主中衍生出来。研究人员解析了HKU2和SADS-CoV刺突(S)糖蛋白三聚体分别在2.38Å和2.83Å分辨率下的冷冻电镜结构。研究人员系统地比较了HKU2刺突结构域和α-,β-,γ-和δ冠状病毒刺突的结构域,发现HKU2/SADS-CoV的S1亚基N-和C-末端结构域是冠状病毒刺突蛋白进化的祖先结构域。HKU2/SADS-CoV S2亚基融合肽的连接区域具有独特的构像。这些结果从结构上证明了HKU2/SADS-CoV和冠状病毒刺突之间的密切进化关系,为冠状病毒的进化和跨物种传播提供了证据。 4.附件: 原文链接:https://www.nature.com/articles/s41467-020-16876-4