2010Japanese Journal of Infectious DiseasesOpen access

The Molecular Virology and Reverse Genetics of Influenza C Virus

Yasushi Muraki, Seiji Hongo

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Abstract

Influenza C virus, an enveloped virus containing seven single-stranded RNA segments of negative polarity, belongs to the genus Influenza C Virus of the family Orthomyxoviridae. A number of questions remain to be resolved with regard to the molecular virology and epidemiology of the virus. To address them, we have established a virus-like particle (VLP) generation system and reverse genetics of the virus and succeeded in clarifying the structure-function relationship of the M1 protein of the virus. Although the approach adopted was similar to that for influenza A virus reverse genetics, the number of infectious influenza C viruses generated was much lower than that for influenza A virus. Based on a comparison of the number of influenza C VLPs with that of influenza A VLPs generated using a similar system, we proposed a virion generation mechanism unique to influenza C virus.

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Influenza C virus, an enveloped virus containing seven single-stranded RNA segments of negative polarity, belongs to the genus Influenza C Virus of the family Orthomyxoviridae. A number of questions remain to be resolved with regard to the molecular virology and epidemiology of the virus. To address them, we have established a virus-like particle (VLP) generation system and reverse genetics of the virus and succeeded in clarifying the structure-function relationship of the M1 protein of the virus. Although the approach adopted was similar to that for influenza A virus reverse genetics, the number of infectious influenza C viruses generated was much lower than that for influenza A virus. Based on a comparison of the number of influenza C VLPs with that of influenza A VLPs generated using a similar system, we proposed a virion generation mechanism unique to influenza C virus.

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Available abstract

Influenza C virus, an enveloped virus containing seven single-stranded RNA segments of negative polarity, belongs to the genus Influenza C Virus of the family Orthomyxoviridae. A number of questions remain to be resolved with regard to the molecular virology and epidemiology of the virus. To address them, we have established a virus-like particle (VLP) generation system and reverse genetics of the virus and succeeded in clarifying the structure-function relationship of the M1 protein of the virus. Although the approach adopted was similar to that for influenza A virus reverse genetics, the number of infectious influenza C viruses generated was much lower than that for influenza A virus. Based on a comparison of the number of influenza C VLPs with that of influenza A VLPs generated using a similar system, we proposed a virion generation mechanism unique to influenza C virus.

Key concepts: Virology, Virus, Reverse genetics, H5N1 genetic structure, Biology, Antigenic shift, Influenza A virus, Orthomyxoviridae

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