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10.1093/infdis/jis423

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C3491741!3491741 !22822004
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suck abstract from ncbi


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pmid22822004
      J+Infect+Dis 2012 ; 206 (5 ): 640-5
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  • H5N1 virus causes significant perturbations in host proteome very early in influenza virus-infected primary human monocyte-derived macrophages #MMPMID22822004
  • Cheung CY ; Chan EY ; Krasnoselsky A ; Purdy D ; Navare AT ; Bryan JT ; Leung CK ; Hui KP ; Peiris JS ; Katze MG
  • J Infect Dis 2012[Sep]; 206 (5 ): 640-5 PMID22822004 show ga
  • H5N1 influenza viruses, which cause disease in humans, have unusually high pathogenicity. The temporal response of primary human monocyte-derived macrophages infected with highly pathogenic H5N1 and seasonal H1N1 influenza viruses was evaluated using mass spectrometry-based quantitative proteomic profiling. This was done in order to demonstrate significant perturbation of the host proteome upon viral infection, as early as 1 hour after infection. This early host response distinguished H5N1 infection from H1N1 infection, the latter inducing less of a response. The most pronounced effect was observed on the translational machinery, suggesting that H5N1 might gain advantage in replication by using the cell protein synthesis machinery early in the infection.
  • |Host-Pathogen Interactions [MESH]
  • |Humans [MESH]
  • |Influenza A Virus, H1N1 Subtype/immunology/metabolism/pathogenicity/*physiology [MESH]
  • |Influenza A Virus, H5N1 Subtype/immunology/metabolism/pathogenicity/*physiology [MESH]
  • |Influenza, Human/immunology/metabolism/*virology [MESH]
  • |Leukocytes, Mononuclear/cytology/immunology [MESH]
  • |Macrophages/cytology/immunology/*virology [MESH]
  • |Principal Component Analysis [MESH]
  • |Proteomics/*methods [MESH]


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