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Variation analysis of the severe acute respiratory syndrome coronavirus putative non-structural protein 2 gene and construction of three-dimensional model.

Identifieur interne : 004564 ( Main/Exploration ); précédent : 004563; suivant : 004565

Variation analysis of the severe acute respiratory syndrome coronavirus putative non-structural protein 2 gene and construction of three-dimensional model.

Auteurs : Jia-Hai Lu [République populaire de Chine] ; Ding-Mei Zhang ; Guo-Ling Wang ; Zhong-Min Guo ; Chuan-Hai Zhang ; Bing-Yan Tan ; Li-Ping Ouyang ; Li Lin ; Yi-Min Liu ; Wei-Qing Chen ; Wen-Hua Ling ; Xin-Bing Yu ; Nan-Shan Zhong

Source :

RBID : pubmed:15899130

Descripteurs français

English descriptors

Abstract

The rapid transmission and high mortality rate made severe acute respiratory syndrome (SARS) a global threat for which no efficacious therapy is available now. Without sufficient knowledge about the SARS coronavirus (SARS-CoV), it is impossible to define the candidate for the anti-SARS targets. The putative non-structural protein 2 (nsp2) (3CL(pro), following the nomenclature by Gao et al, also known as nsp5 in Snidjer et al) of SARS-CoV plays an important role in viral transcription and replication, and is an attractive target for anti-SARS drug development, so we carried on this study to have an insight into putative polymerase nsp2 of SARS-CoV Guangdong (GD) strain.

PubMed: 15899130


Affiliations:


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Le document en format XML

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<term>Cysteine Endopeptidases (genetics)</term>
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<term>Humans</term>
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<div type="abstract" xml:lang="en">The rapid transmission and high mortality rate made severe acute respiratory syndrome (SARS) a global threat for which no efficacious therapy is available now. Without sufficient knowledge about the SARS coronavirus (SARS-CoV), it is impossible to define the candidate for the anti-SARS targets. The putative non-structural protein 2 (nsp2) (3CL(pro), following the nomenclature by Gao et al, also known as nsp5 in Snidjer et al) of SARS-CoV plays an important role in viral transcription and replication, and is an attractive target for anti-SARS drug development, so we carried on this study to have an insight into putative polymerase nsp2 of SARS-CoV Guangdong (GD) strain.</div>
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