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The M Protein of SARS-CoV: Basic Structural and Immunological Properties

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-glycosylati...

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Detalles Bibliográficos
Autores principales: Hu, Yongwu, Wen, Jie, Tang, Lin, Zhang, Haijun, Zhang, Xiaowei, Li, Yan, Wang, Jing, Han, Yujun, Li, Guoqing, Shi, Jianping, Tian, Xiangjun, Jiang, Feng, Zhao, Xiaoqian, Wang, Jun, Liu, Siqi, Zeng, Changqing, Wang, Jian, Yang, Huanming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2003
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5172243/
https://www.ncbi.nlm.nih.gov/pubmed/15626342
http://dx.doi.org/10.1016/S1672-0229(03)01016-7
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author Hu, Yongwu
Wen, Jie
Tang, Lin
Zhang, Haijun
Zhang, Xiaowei
Li, Yan
Wang, Jing
Han, Yujun
Li, Guoqing
Shi, Jianping
Tian, Xiangjun
Jiang, Feng
Zhao, Xiaoqian
Wang, Jun
Liu, Siqi
Zeng, Changqing
Wang, Jian
Yang, Huanming
author_facet Hu, Yongwu
Wen, Jie
Tang, Lin
Zhang, Haijun
Zhang, Xiaowei
Li, Yan
Wang, Jing
Han, Yujun
Li, Guoqing
Shi, Jianping
Tian, Xiangjun
Jiang, Feng
Zhao, Xiaoqian
Wang, Jun
Liu, Siqi
Zeng, Changqing
Wang, Jian
Yang, Huanming
author_sort Hu, Yongwu
collection PubMed
description 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.
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spelling pubmed-51722432016-12-23 The M Protein of SARS-CoV: Basic Structural and Immunological Properties Hu, Yongwu Wen, Jie Tang, Lin Zhang, Haijun Zhang, Xiaowei Li, Yan Wang, Jing Han, Yujun Li, Guoqing Shi, Jianping Tian, Xiangjun Jiang, Feng Zhao, Xiaoqian Wang, Jun Liu, Siqi Zeng, Changqing Wang, Jian Yang, Huanming Genomics Proteomics Bioinformatics Invited Article 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. Elsevier 2003-05 2016-11-28 /pmc/articles/PMC5172243/ /pubmed/15626342 http://dx.doi.org/10.1016/S1672-0229(03)01016-7 Text en . http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Invited Article
Hu, Yongwu
Wen, Jie
Tang, Lin
Zhang, Haijun
Zhang, Xiaowei
Li, Yan
Wang, Jing
Han, Yujun
Li, Guoqing
Shi, Jianping
Tian, Xiangjun
Jiang, Feng
Zhao, Xiaoqian
Wang, Jun
Liu, Siqi
Zeng, Changqing
Wang, Jian
Yang, Huanming
The M Protein of SARS-CoV: Basic Structural and Immunological Properties
title The M Protein of SARS-CoV: Basic Structural and Immunological Properties
title_full The M Protein of SARS-CoV: Basic Structural and Immunological Properties
title_fullStr The M Protein of SARS-CoV: Basic Structural and Immunological Properties
title_full_unstemmed The M Protein of SARS-CoV: Basic Structural and Immunological Properties
title_short The M Protein of SARS-CoV: Basic Structural and Immunological Properties
title_sort m protein of sars-cov: basic structural and immunological properties
topic Invited Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5172243/
https://www.ncbi.nlm.nih.gov/pubmed/15626342
http://dx.doi.org/10.1016/S1672-0229(03)01016-7
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