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Insights into the increasing virulence of the swine-origin pandemic H1N1/2009 influenza virus.


ABSTRACT: Pandemic H1N1/2009 viruses have been stabilized in swine herds, and some strains display higher pathogenicity than the human-origin isolates. In this study, high-throughput RNA sequencing (RNA-seq) is applied to explore the systemic transcriptome responses of the mouse lungs infected by swine (Jia6/10) and human (LN/09) H1N1/2009 viruses. The transcriptome data show that Jia6/10 activates stronger virus-sensing signals, such as the toll-like receptor, RIG-I like receptor and NOD-like receptor signalings, as well as a stronger NF-?B and JAK-STAT signals, which play significant roles in inducing innate immunity. Most cytokines and interferon-stimulated genes show higher expression lever in Jia/06 infected groups. Meanwhile, virus Jia6/10 activates stronger production of reactive oxygen species, which might further promote higher mutation rate of the virus genome. Collectively, our data reveal that the swine-origin pandemic H1N1/2009 virus elicits a stronger innate immune reaction and pro-oxidation stimulation, which might relate closely to the increasing pathogenicity.

SUBMITTER: Zou W 

PROVIDER: S-EPMC3615340 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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Insights into the increasing virulence of the swine-origin pandemic H1N1/2009 influenza virus.

Zou Wei W   Chen Dijun D   Xiong Min M   Zhu Jiping J   Lin Xian X   Wang Lun L   Zhang Jun J   Chen Lingling L   Zhang Hongyu H   Chen Huanchun H   Chen Ming M   Jin Meilin M  

Scientific reports 20130101


Pandemic H1N1/2009 viruses have been stabilized in swine herds, and some strains display higher pathogenicity than the human-origin isolates. In this study, high-throughput RNA sequencing (RNA-seq) is applied to explore the systemic transcriptome responses of the mouse lungs infected by swine (Jia6/10) and human (LN/09) H1N1/2009 viruses. The transcriptome data show that Jia6/10 activates stronger virus-sensing signals, such as the toll-like receptor, RIG-I like receptor and NOD-like receptor si  ...[more]

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