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PMID: 32214698 Published · ppublish English Journal Article

A complete sequence and comparative analysis of a SARS-associated virus (Isolate BJ01).

Chinese science bulletin = Kexue tongbao ·Vol. 48 ·No. 10 ·2003-00-00 ·Pages 941-948

Qin E, Zhu Q, Yu M, Fan B, Chang G, Si B, Yang B, Peng W, Jiang T, Liu B, Deng Y, Liu H, Zhang Y, Wang C, Li Y, Gan Y, Li X, Lü F, Tan G, Cao W, Yang R, Wang J, Li W, Xu Z, Li Y, Wu Q, Lin W, Chen W, Tang L, Deng Y, Han Y, Li C, Lei M, Li G, Li W, Lü H, Shi J, Tong Z, Zhang F, Li S, Liu B, Liu S, Dong W, Wang J, Wong GK, Yu J, Yang H

Abstract

The genome sequence of the Severe Acute Respiratory Syndrome (SARS)-associated virus provides essential information for the identification of pathogen(s), exploration of etiology and evolution, interpretation of transmission and pathogenesis, development of diagnostics, prevention by future vaccination, and treatment by developing new drugs. We report the complete genome sequence and comparative analysis of an isolate (BJ01) of the coronavirus that has been recognized as a pathogen for SARS. The genome is 29725 nt in size and has 11 ORFs (Open Reading Frames). It is composed of a stable region encoding an RNA-dependent RNA polymerase (composed of 2 ORFs) and a variable region representing 4 CDSs (coding sequences) for viral structural genes (the S, E, M, N proteins) and 5 PUPs (putative uncharacterized proteins). Its gene order is identical to that of other known coronaviruses. The sequence alignment with all known RNA viruses places this virus as a member in the family of Coronaviridae. Thirty putative substitutions have been identified by comparative analysis of the 5 SARS-associated virus genome sequences in GenBank. Fifteen of them lead to possible amino acid changes (non-synonymous mutations) in the proteins. Three amino acid changes, with predicted alteration of physical and chemical features, have been detected in the S protein that is postulated to be involved in the immunoreactions between the virus and its host. Two amino acid changes have been detected in the M protein, which could be related to viral envelope formation. Phylogenetic analysis suggests the possibility of non-human origin of the SARS-associated viruses but provides no evidence that they are man-made. Further efforts should focus on identifying the etiology of the SARS-associated virus and ruling out conclusively the existence of other possible SARS-related pathogen(s).

Keywords
Severe Acute Respiratory Syndrome (SARS) coronavirus genome phylogeny
Authors & Affiliations
47 authors, click to expand affiliations / ORCID
Qin E'de
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Zhu Qingyu
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Yu Man
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Fan Baochang
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Chang Guohui
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Si Bingyin
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Yang Bao'an
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Peng Wenming
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Jiang Tao
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Liu Bohua
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Deng Yongqiang
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Liu Hong
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Zhang Yu
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Wang Cui'e
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Li Yuquan
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Gan Yonghua
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Li Xiaoyu
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Lü Fushuang
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Tan Gang
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Cao Wuchun
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Yang Ruifu
1Institute of Microbiology and Epidemiology, Chinese Academy of Military Medical Sciences, 100071 Beijing, China.
Wang Jian
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Li Wei
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Xu Zuyuan
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Li Yan
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Wu Qingfa
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Lin Wei
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Chen Weijun
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Tang Lin
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Deng Yajun
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Han Yujun
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Li Changfeng
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Lei Meng
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Li Guoqing
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Li Wenjie
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Lü Hong
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Shi Jianping
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Tong Zongzhong
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Zhang Feng
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Li Songgang
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Liu Bin
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Liu Siqi
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Dong Wei
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Wang Jun
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Wong Gane K-S
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Yu Jun
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
Yang Huanming
2Beijing Genomics Institute, Chinese Academy of Sciences, 101300 Beijing. | National Center for Genome Information, 101300 Beijing, China.
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Article Info
Journal
Chinese science bulletin = Kexue tongbao
Abbr.
Chin Sci Bull
ISSN
1001-6538
Published
2003-00-00
Pages
941-948
Language
English
Region
China
NLM ID
9201886
PMCID
PMC7088533
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