Severe acute respiratory syndrome (SARS), a life-threatening disease, is caused by the newly identified virus SARS coronavirus (SARS-CoV). In order to study the spike (S) protein of this highly contagious virus, we established a clonal cell-line, CHO-SG, from the Chinese hamster ovary cells that stably expresses C-terminally EGFP-tagged SARS-CoV S protein (S-EGFP). The ectodomain of the S glycoprotein is localized on the surface of CHO-SG cells with N-acetyl-glucosamine-terminated carbohydrate structure. CHO-SG cells associated tightly with Vero E6 cells, a SARS-CoV receptor (ACE2) expressing cell-line, and the interaction remained stable under highly stringent condition (1M NaCl). This interaction could be blocked by either the serum from a SARS convalescent patient or a goat anti-ACE2 antibody, indicating that the interaction is specific. A binding epitope with lesser degree of glycosylation and native conformation was localized by using rabbit anti-sera raised against five denatured recombinant S protein fragments expressed in Escherichia coli. One of the sera obtained from the fragment encompassing amino acids 48-358 significantly blocked the interaction between CHO-SG and Vero E6 cells. The region is useful for studying neutralizing antibodies in future vaccine development. This paper describes an easy and safe cell-based assay suitable for studying the binding between SARS-CoV S protein and its receptor.
A novel cell-based binding assay system reconstituting interaction between SARS-CoV S protein and its cellular receptor.
一种新型的基于细胞的结合分析系统,可重现 SARS-CoV S 蛋白与其细胞受体之间的相互作用
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作者:Chou Chih-Fong, Shen Shuo, Tan Yee-Joo, Fielding Burtram C, Tan Timothy H P, Fu Jianlin, Xu Qiurong, Lim Seng Gee, Hong Wanjin
| 期刊: | Journal of Virological Methods | 影响因子: | 1.600 |
| 时间: | 2005 | 起止号: | 2005 Jan;123(1):41-8 |
| doi: | 10.1016/j.jviromet.2004.09.008 | 研究方向: | 细胞生物学 |
| 疾病类型: | 新冠 | ||
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