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一种特殊铁精矿生产氧化球团的研究 被引量:2
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作者 刘庆华 孟光栋 +1 位作者 徐沈 李伟进 《矿业工程》 CAS 2019年第3期39-42,共4页
研究通过对一种特殊铁精矿生产氧化性球团矿工艺的探索,得出此类铁精矿生产氧化球团时,膨润土用量相对较高;预热过程温度不容易控制,但球团矿强度较好.低温还原粉化性能指标较好,但是软熔和低落温度相对较低.
关键词 铁精矿 球团 氧化球团
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Identification of an epitope of SARS-coronavirus nucleocapsid protein 被引量:23
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作者 YINGLIN xushen +16 位作者 RUIFuYANG YIXUELI YONGYONGJI YouYuHE MuDESHI WEILU TIELIUSHI BINGSUN JINWANG HONGXIAWANG HUALIANGJIANG JIANHUASHEN YOUHUAXIE YUANWANG GANGPEI BBIFENSHEN JIARUIWU 《Cell Research》 SCIE CAS CSCD 2003年第3期141-145,共5页
The nueleocapsid (N) protein of severe acute respiratory syndrome-coronavirus (SARS-CoV) is a major virion structural protein. In this study, two epitopes (Nl and N2) of the N protein of SARS-CoV were predicted by bio... The nueleocapsid (N) protein of severe acute respiratory syndrome-coronavirus (SARS-CoV) is a major virion structural protein. In this study, two epitopes (Nl and N2) of the N protein of SARS-CoV were predicted by bioinformatics analysis. After immunization with two peptides, the peptides-specific antibodies were isolated from the immunized rabbits. The further experiments demonstrated that N1 peptide-induced polyclonal antibodies had a high affinity to bind to E. coli expressed N protein of SAR,S-CoV. Furthermore, it was confirmed that Nl peptide-specific IgG antibodies were detectable in the sera of severe acute respiratory syndrome (SARS) patients. The results indicated that an epitope of the N protein has been identified and N protein specific Abs were produced by peptide immunization, which will be useful for the study of SARS-CoV. 展开更多
关键词 severe acute respiratory syndrome-coronavirus necleocapsid protein EPITOPE polyclonal antibody antiserum.
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31nstitute of Materia Medica, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 320 Taiyuan Road,Shanghai 200031, China.
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作者 XiaoDongWU BoSHANG +20 位作者 RuiFuYANG HaoYU ZhiHalMA xushen YongYongJI YingLIN YaDiWU GuoMeiLIN LinTIAN XiaoQingGAN ShengYANG WeiHongJIANG ErHeiDAI XiaoYiWANG HuaLiangJIANG YouHuaXIE XueLiangZHU GangPEI LinLI JiaRuiWU BingSUN 《Cell Research》 SCIE CAS CSCD 2004年第5期400-406,共7页
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 env... 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, S 1 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 S 1 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-S 1 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. 展开更多
关键词 刺突蛋白 严重急性呼吸综合症 SARS 冠状病毒 宿主细胞 受体
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