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Amino Acids 270 to 510 of the Severe Acute Respiratory Syndrome Coronavirus Spike Protein Are Required for Interaction with Receptor

机译:与受体相互作用需要重症急性呼吸系统综合症冠状病毒突突蛋白的氨基酸270至510

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摘要

A novel coronavirus, severe acute respiratory syndrome coronavirus (SARS-CoV), has recently been identified as the causative agent of severe acute respiratory syndrome (SARS). SARS-CoV appears similar to other coronaviruses in both virion structure and genome organization. It is known for other coronaviruses that the spike (S) glycoprotein is required for both viral attachment to permissive cells and for fusion of the viral envelope with the host cell membrane. Here we describe the construction and expression of a soluble codon-optimized SARS-CoV S glycoprotein comprising the first 1,190 amino acids of the native S glycoprotein (S1190). The codon-optimized and native S glycoproteins exhibit similar molecular weight as determined by Western blot analysis, indicating that synthetic S glycoprotein is modified correctly in a mammalian expression system. S1190 binds to the surface of Vero E6 cells, a cell permissive to infection, as demonstrated by fluorescence-activated cell sorter analysis, suggesting that S1190 maintains the biologic activity present in native S glycoprotein. This interaction is blocked with serum obtained from recovering SARS patients, indicating that the binding is specific. In an effort to map the ligand-binding domain of the SARS-CoV S glycoprotein, carboxy- and amino-terminal truncations of the S1190 glycoprotein were constructed. Amino acids 270 to 510 were the minimal receptor-binding region of the SARS-CoV S glycoprotein as determined by flow cytometry. We speculate that amino acids 1 to 510 of the SARS-CoV S glycoprotein represent a unique domain containing the receptor-binding site (amino acids 270 to 510), analogous to the S1 subunit of other coronavirus S glycoproteins.
机译:新型冠状病毒,严重急性呼吸综合征冠状病毒(SARS-CoV),最近已被确定为严重急性呼吸综合征(SARS)的病原体。 SARS-CoV在病毒体结构和基因组组织上都与其他冠状病毒相似。对于其他冠状病毒,已知刺突(S)糖蛋白是病毒附着在允许细胞上以及病毒包膜与宿主细胞膜融合所必需的。在这里,我们描述了包含天然S糖蛋白(S1190)的前1,190个氨基酸的可溶性密码子优化的SARS-CoV S糖蛋白的构建和表达。密码子优化的天然S糖蛋白的分子量与Western blot分析结果相近,表明合成的S糖蛋白在哺乳动物表达系统中被正确修饰。 S1190结合到Vero E6细胞的表面,Vero E6细胞是一种允许感染的细胞,通过荧光激活的细胞分选分析表明,这表明S1190维持天然S糖蛋白中存在的生物活性。该相互作用被从康复中的SARS患者获得的血清阻断,表明该结合是特异性的。为了定位SARS-CoV S糖蛋白的配体结合结构域,构建了S1190糖蛋白的羧基和氨基末端截短。通过流式细胞仪测定,氨基酸270至510是SARS-CoV S糖蛋白的最小受体结合区。我们推测SARS-CoV S糖蛋白的氨基酸1到510代表一个包含受体结合位点的独特域(氨基酸270到510),类似于其他冠状病毒S糖蛋白的S1亚基。

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