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The spike protein of severe acute respiratory syndrome (SARS) is cleaved in virus infected Vero-E6 cells
Authors:Wu Xiao Dong  Shang Bo  Yang Rui Fu  Yu Hao  Ma Zhi Hai  Shen Xu  Ji Yong Yong  Lin Ying  Wu Ya Di  Lin Guo Mei  Tian Lin  Gan Xiao Qing  Yang Sheng  Jiang Wei Hong  Dai Er Hei  Wang Xiao Yi  Jiang Hua Liang  Xie You Hua  Zhu Xue Liang  Pei Gang  Li Lin  Wu Jia Rui  Sun Bing
Institution:Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 320 Yueyang Road, Shanghai 200031, China.
Abstract:Spike protein is one of the major structural proteins of severe acute respiratory syndrome-coronavirus. It is essential for the interaction of the virons with host cell receptors and subsequent fusion of the viral envelop with host cell membrane to allow infection. Some spike proteins of coronavirus, such as MHV, HCoV-OC43, AIBV and BcoV, are proteolytically cleaved into two subunits, S1 and S2. In contrast, TGV, FIPV and HCoV-229E are not. Many studies have shown that the cleavage of spike protein seriously affects its function. In order to investigate the maturation and proteolytic processing of the S protein of SARS CoV, we generated S1 and S2 subunit specific antibodies (Abs) as well as N, E and 3CL protein-specific Abs. Our results showed that the antibodies could efficiently and specifically bind to their corresponding proteins from E.coli expressed or lysate of SARS-CoV infected Vero-E6 cells by Western blot analysis. Furthermore, the anti-S1 and S2 Abs were proved to be capable of binding to SARS CoV under electron microscope observation. When S2 Ab was used to perform immune precipitation with lysate of SARS-CoV infected cells, a cleaved S2 fragment was detected with S2-specific mAb by Western blot analysis. The data demonstrated that the cleavage of S protein was observed in the lysate, indicating that proteolytic processing of S protein is present in host cells.
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