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Cryo-EM structure of the SARS coronavirus spike glycoprotein in complex with its host cell receptor ACE2

机译:SARS冠状病毒加标糖蛋白及其宿主细胞受体ACE2的低温EM结构

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摘要

The trimeric SARS coronavirus (SARS-CoV) surface spike (S) glycoprotein consisting of three S1-S2 heterodimers binds the cellular receptor angiotensin-converting enzyme 2 (ACE2) and mediates fusion of the viral and cellular membranes through a pre- to postfusion conformation transition. Here, we report the structure of the SARS-CoV S glycoprotein in complex with its host cell receptor ACE2 revealed by cryo-electron microscopy (cryo-EM). The complex structure shows that only one receptor-binding domain of the trimeric S glycoprotein binds ACE2 and adopts a protruding “up” conformation. In addition, we studied the structures of the SARS-CoV S glycoprotein and its complexes with ACE2 in different in vitro conditions, which may mimic different conformational states of the S glycoprotein during virus entry. Disassociation of the S1-ACE2 complex from some of the prefusion spikes was observed and characterized. We also characterized the rosette-like structures of the clustered SARS-CoV S2 trimers in the postfusion state observed on electron micrographs. Structural comparisons suggested that the SARS-CoV S glycoprotein retains a prefusion architecture after trypsin cleavage into the S1 and S2 subunits and acidic pH treatment. However, binding to the receptor opens up the receptor-binding domain of S1, which could promote the release of the S1-ACE2 complex and S1 monomers from the prefusion spike and trigger the pre- to postfusion conformational transition.
机译:由三个S1-S2异二聚体组成的三聚体SARS冠状病毒(SARS-CoV)表面刺突(S)糖蛋白与细胞受体血管紧张素转化酶2(ACE2)结合,并通过融合前后的构象介导病毒和细胞膜的融合过渡。在这里,我们报道了冷冻电子显微镜(cryo-EM)揭示SARS-CoV S糖蛋白与其宿主细胞受体ACE2的复合结构。复杂的结构表明,三聚体S糖蛋白中只有一个受体结合域与ACE2结合,并具有突出的“向上”构象。此外,我们在不同的体外条件下研究了SARS-CoV S糖蛋白的结构及其与ACE2的复合物,这可能模拟了病毒进入过程中S糖蛋白的不同构象状态。观察到并表征了S1-ACE2复合物与一些预融合峰的分离。我们还表征了在电子显微镜下观察到的融合后状态下,成簇的SARS-CoV S2三聚体的玫瑰状结构。结构比较表明,胰蛋白酶切割成S1和S2亚基并进行酸性pH处理后,SARS-CoV S糖蛋白保留了预融合结构。但是,与受体的结合会打开S1的受体结合域,这可能会促进S1-ACE2复合物和S1单体从融合前的峰值释放,并触发融合前到融合后的构象转变。

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