Literature DB >> 21904849

Characterisation of a highly pathogenic H5N1 clade 2.3.2 influenza virus isolated from swans in Shanghai, China.

Guo Zhao1, Lei Zhong, Xinlun Lu, Jiao Hu, Xiaobing Gu, Yan Kai, Qingqing Song, Qing Sun, Jinbao Liu, Daxin Peng, Xiaoquan Wang, Xiaowen Liu, Xiufan Liu.   

Abstract

In spring 2009, one strain of H5N1 clade 2.3.2 virus was isolated from wild swans in Shanghai, indicating the importance of the wild swan in the ecology of this highly pathogenic avian influenza virus (HPAIV) in Eastern China. Pathogenicity experiments conducted in this study indicated that the virus was highly pathogenic for chickens but lowly pathogenic for mammalian hosts, as evidenced by reduced infection of mice. The analysis of complete genome sequences and genetic evolution showed that A/Swan/Shanghai/10/09 (SW/SH/09) may be derived from the strain A/silky chicken/Shantou/475/2004 (CK/ST/04), which is homologous to the influenza viruses isolated from chicken, duck, pika, little egret, swan, mandarin duck and bar-headed goose in China Hunan, China Qinghai, Mongolia, Russia, Japan, Korea, Laos and Hong Kong during 2007-2011, indicating that the virus has retro-infected diverse wild birds from chicken, and significant spread of the virus is still ongoing through overlapping migratory flyways. On the basis of the molecular analysis, we also found that there was a deletion of the glycosylation site (NSS) in amino acid 156 of the hemagglutinin (HA) protein when compared with that of the other Clade 2.3.2 viruses isolated between 2007 and 2011. More importantly, the sequence analysis of SW/SH/09 virus displayed the drug-resistant mutations on the matrix protein (M2) and neuraminidase (NA) genes.

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Year:  2011        PMID: 21904849     DOI: 10.1007/s11262-011-0667-8

Source DB:  PubMed          Journal:  Virus Genes        ISSN: 0920-8569            Impact factor:   2.332


  21 in total

1.  Avian flu: H5N1 virus outbreak in migratory waterfowl.

Authors:  H Chen; G J D Smith; S Y Zhang; K Qin; J Wang; K S Li; R G Webster; J S M Peiris; Y Guan
Journal:  Nature       Date:  2005-07-14       Impact factor: 49.962

2.  How to overcome resistance of influenza A viruses against adamantane derivatives.

Authors:  C Scholtissek; G Quack; H D Klenk; R G Webster
Journal:  Antiviral Res       Date:  1998-02       Impact factor: 5.970

3.  Hemagglutinin mutations related to attenuation and altered cell tropism of a virulent avian influenza A virus.

Authors:  M Philpott; C Hioe; M Sheerar; V S Hinshaw
Journal:  J Virol       Date:  1990-06       Impact factor: 5.103

4.  Highly pathogenic H5N1 influenza virus infection in migratory birds.

Authors:  J Liu; H Xiao; F Lei; Q Zhu; K Qin; X-W Zhang; X-L Zhang; D Zhao; G Wang; Y Feng; J Ma; W Liu; J Wang; G F Gao
Journal:  Science       Date:  2005-07-06       Impact factor: 47.728

5.  Avian flu: isolation of drug-resistant H5N1 virus.

Authors:  Q Mai Le; Maki Kiso; Kazuhiko Someya; Yuko T Sakai; T Hien Nguyen; Khan H L Nguyen; N Dinh Pham; Ha H Ngyen; Shinya Yamada; Yukiko Muramoto; Taisuke Horimoto; Ayato Takada; Hideo Goto; Takashi Suzuki; Yasuo Suzuki; Yoshihiro Kawaoka
Journal:  Nature       Date:  2005-10-20       Impact factor: 49.962

6.  Structure of antigenic sites on the haemagglutinin molecule of H5 avian influenza virus and phenotypic variation of escape mutants.

Authors:  Nikolai V Kaverin; Irina A Rudneva; Natalia A Ilyushina; Natalia L Varich; Aleksandr S Lipatov; Yuri A Smirnov; Elena A Govorkova; Asya K Gitelman; Dmitri K Lvov; Robert G Webster
Journal:  J Gen Virol       Date:  2002-10       Impact factor: 3.891

7.  A reverse transcription-PCR for subtyping of the neuraminidase of avian influenza viruses.

Authors:  Bao-Feng Qiu; Wu-Jie Liu; Da-Xin Peng; Shun-Lin Hu; Ying-Hua Tang; Xiu-Fan Liu
Journal:  J Virol Methods       Date:  2008-12-03       Impact factor: 2.014

Review 8.  Molecular epidemiology of H5N1 avian influenza.

Authors:  Y Guan; G J D Smith; R Webby; R G Webster
Journal:  Rev Sci Tech       Date:  2009-04       Impact factor: 1.181

9.  Development of multiplex rt-PCR assays for rapid detection and subtyping of influenza type A viruses from clinical specimens.

Authors:  Hee Kyoung Chang; Jeung Hyun Park; Min-Suk Song; Taek-Kyu Oh; Seok-Young Kim; Chul-Jung Kim; Hyunggee Kim; Moon-Hee Sung; Heon-Seok Han; Youn-Soo Hahn; Young-Ki Choi
Journal:  J Microbiol Biotechnol       Date:  2008-06       Impact factor: 2.351

10.  Influenza virus hemagglutinin with multibasic cleavage site is activated by furin, a subtilisin-like endoprotease.

Authors:  A Stieneke-Gröber; M Vey; H Angliker; E Shaw; G Thomas; C Roberts; H D Klenk; W Garten
Journal:  EMBO J       Date:  1992-07       Impact factor: 11.598

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  3 in total

1.  Risks of avian influenza transmission in areas of intensive free-ranging duck production with wild waterfowl.

Authors:  Julien Cappelle; Delong Zhao; Marius Gilbert; Martha I Nelson; Scott H Newman; John Y Takekawa; Nicolas Gaidet; Diann J Prosser; Ying Liu; Peng Li; Yuelong Shu; Xiangming Xiao
Journal:  Ecohealth       Date:  2014-03-21       Impact factor: 3.184

Review 2.  Avian influenza A H5N1 virus: a continuous threat to humans.

Authors:  Kelvin Kw To; Kenneth Hl Ng; Tak-Lun Que; Jacky Mc Chan; Kay-Yan Tsang; Alan Kl Tsang; Honglin Chen; Kwok-Yung Yuen
Journal:  Emerg Microbes Infect       Date:  2012-09-19       Impact factor: 7.163

3.  Development of a magnetic electrochemical bar code array for point mutation detection in the H5N1 neuraminidase gene.

Authors:  Ludmila Krejcova; David Hynek; Pavel Kopel; Miguel Angel Merlos Rodrigo; Vojtech Adam; Jaromir Hubalek; Petr Babula; Libuse Trnkova; Rene Kizek
Journal:  Viruses       Date:  2013-07-15       Impact factor: 5.048

  3 in total

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