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The C-Terminal Portion of the Nucleocapsid Protein Demonstrates SARS-CoV Antigenicity 被引量:4
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作者 GuozhenLiu ShaohuiHu +21 位作者 YongwuHu PengChen JianningYin JieWen JingqiangWang LiangLin JinxiuLiu BoYou YeYin ShutingLi HaoWang YanRen JiaJi xiaoqianzhao YongqiaoSun XiaoweiZhang JianqiuFang JianWang SiqiLiu JunYu HengZhu HuanmingYang 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2003年第3期193-197,共5页
In order to develop clinical diagnostic tools for rapid detection of SARS-CoV (severe acute respiratory syndrome-associated coronavirus) and to identify candidate proteins for vaccine development, the C-terminal porti... In order to develop clinical diagnostic tools for rapid detection of SARS-CoV (severe acute respiratory syndrome-associated coronavirus) and to identify candidate proteins for vaccine development, the C-terminal portion of the nucleocapsid (NC) gene was amplified using RT-PCR from the SARS-CoV genome, cloned into a yeast expression vector (pEGH), and expressed as a glutathione S-transferase (GST) and Hisx6 double-tagged fusion protein under the control of an inducible promoter. Western analysis on the purified protein confirmed the expression and purification of the NC fusion proteins from yeast. To determine its antigenicity, the fusion protein was challenged with serum samples from SARS patients and normal controls. The NC fusion protein demonstrated high antigenicity with high specificity, and therefore, it should have great potential in designing clinical diagnostic tools and provide useful information for vaccine development. 展开更多
关键词 Severe Acute Respiratory Syndrome (SARS) CORONAVIRUS nucleocapsid protein ANTIGENICITY yeast expression system
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The Structure Analysis and Antigenicity Study of the N Protein of SARS-CoV 被引量:4
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作者 JingqiangWang JiaJi +15 位作者 JiaYe xiaoqianzhao JieWen WeiLi JianfeiHu DaweiLi MinSun HaipanZeng YongwuHu XiangjunTian XuehaiTan NingzhiXu ChangqingZeng JianWang ShengliBi HuanmingYang 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2003年第2期145-154,共10页
The Coronaviridae family is characterized by a nucleocapsid that is composed of the genome RNA molecule in combination with the nucleoprotein (N protein) within a virion. The most striking physiochemical feature of th... The Coronaviridae family is characterized by a nucleocapsid that is composed of the genome RNA molecule in combination with the nucleoprotein (N protein) within a virion. The most striking physiochemical feature of the N protein of SARS-CoV is that it is a typical basic protein with a high predicted pI and high hydrophilicity, which is consistent with its function of binding to the ribophosphate backbone of the RNA molecule. The predicted high extent of phosphorylation of the N protein on multiple candidate phosphorylation sites demonstrates that it would be related to important functions, such as RNA-binding and localization to the nucleolus of host cells. Subsequent study shows that there is an SR-rich region in the N protein and this region might be involved in the protein-protein interaction. The abundant antigenic sites predicted in the N protein, as well as experimental evidence with synthesized polypeptides, indicate that the N protein is one of the major antigens of the SARS-CoV. Compared with other viral structural proteins, the low variation rate of the N protein with regards to its size suggests its importance to the survival of the virus. 展开更多
关键词 SARS-COV NUCLEOPROTEIN PHOSPHORYLATION SR-rich region antigenic sites
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The M Protein of SARS-CoV: Basic Structural and Immunological Properties 被引量:1
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作者 JunWang SiqiLiu +15 位作者 ChangqingZeng JianWang HuanmingYang YongwuHu JieWen LinTang HaijunZhang XiaoweiZhang YahLi JingWang YujunHan GuoqingLi JianpingShi XiangjunTian FengJiang xiaoqianzhao 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2003年第2期118-130,共13页
We studied structural and immunological properties of the SARS-CoV M (membrane) protein, based on comparative analyses of sequence features, phylogenetic investigation, and experimental results. The M protein is predi... We studied structural and immunological properties of the SARS-CoV M (membrane) protein, based on comparative analyses of sequence features, phylogenetic investigation, and experimental results. The M protein is predicted to contain a triple-spanning transmembrane (TM) region, a single N-glycosylation site near its N-terminus that is in the exterior of the virion, and a long C-terminal region in the interior. The M protein harbors a higher substitution rate (0.6% correlated to its size) among viral open reading frames (ORFs) from published data. The four substitutions detected in the M protein, which cause non-synonymous changes, can be classified into three types. One of them results in changes of pI (isoelectric point) and charge, affecting antigenicity. The second changes hydrophobicity of the TM region, and the third one relates to hydrophilicity of the interior structure. Phylogenetic tree building based on the variations of the M protein appears to support the non-human origin of SARS-CoV. To investigate its immunogenicity, we synthesized eight oligopeptides covering 69.2% of the entire ORF and screened them by using ELISA (enzyme-linked immunosorbent assay) with sera from SARS patients. The results confirmed our predictions on antigenic sites. 展开更多
关键词 SARS-COV the M protein enzyme immunoassay ANTIGENICITY
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