Emergence of Highly Pathogenic Avian Influenza A(H5N1) Virus PB1-F2 Variants and Their Virulence in BALB/c Mice

Author:

Kamal Ram P.,Kumar Amrita,Davis Charles T.,Tzeng Wen-Pin,Nguyen Tung,Donis Ruben O.,Katz Jacqueline M.,York Ian A.

Abstract

ABSTRACTInfluenza A viruses (IAVs) express the PB1-F2 protein from an alternate reading frame within the PB1 gene segment. The roles of PB1-F2 are not well understood but appear to involve modulation of host cell responses. As shown in previous studies, we find that PB1-F2 proteins of mammalian IAVs frequently have premature stop codons that are expected to cause truncations of the protein, whereas avian IAVs usually express a full-length 90-amino-acid PB1-F2. However, in contrast to other avian IAVs, recent isolates of highly pathogenic H5N1 influenza viruses had a high proportion of PB1-F2 truncations (15% since 2010; 61% of isolates in 2013) due to several independent mutations that have persisted and expanded in circulating viruses. One natural H5N1 IAV containing a mutated PB1-F2 start codon (i.e., lacking ATG) was 1,000-fold more virulent for BALB/c mice than a closely related H5N1 containing intact PB1-F2.In vitro, we detected expression of an in-frame protein (C-terminal PB1-F2) from downstream ATGs in PB1-F2 plasmids lacking the well-conserved ATG start codon. Transient expression of full-length PB1-F2, truncated (24-amino-acid) PB1-F2, and PB1-F2 lacking the initiating ATG in mammalian and avian cells had no effect on cell apoptosis or interferon expression in human lung epithelial cells. Full-length and C-terminal PB1-F2 mutants colocalized with mitochondria in A549 cells. Close monitoring of alterations of PB1-F2 and their frequency in contemporary avian H5N1 viruses should continue, as such changes may be markers for mammalian virulence.IMPORTANCEAlthough most avian influenza viruses are harmless for humans, some (such as highly pathogenic H5N1 avian influenza viruses) are capable of infecting humans and causing severe disease with a high mortality rate. A number of risk factors potentially associated with adaptation to mammalian infection have been noted. Here we demonstrate that the protein PB1-F2 is frequently truncated in recent isolates of highly pathogenic H5N1 viruses. Truncation of PB1-F2 has been proposed to act as an adaptation to mammalian infection. We show that some forms of truncation of PB1-F2 may be associated with increased virulence in mammals. Our data support the assessment of PB1-F2 truncations for genomic surveillance of influenza viruses.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference48 articles.

1. OIE. 26 February 2015. Update on highly pathogenic avian influenza in animals (type H5 and H7). Accessed 4 March 2015. http://www.oie.int/animal-health-in-the-world/update-on-avian-influenza/2015/.

2. Clinical features and rapid viral diagnosis of human disease associated with avian influenza A H5N1 virus;Lancet,1998

3. The development and genetic diversity of H5N1 influenza virus in China, 1996-2006;Virology,2008

4. Evolution of highly pathogenic avian influenza (H5N1) virus populations in Vietnam between 2007 and 2010;Virology,2012

5. WHO. 26 January 2015. Cumulative number of confirmed human cases of avian influenza A(H5N1) reported to WHO, 2003-2015. Accessed 2 March 2015. http://www.who.int/influenza/human_animal_interface/EN_GIP_20150126CumulativeNumberH5N1cases.pdf?ua=1.

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