Adaptive mutation in influenza A virus non-structural gene is linked to host switching and induces a novel protein by alternative splicing.

Mohammed Selman1,2 Samar K Dankar1,2 Nicole E Forbes1,2 Jian-Jun Jia3 Earl G Brown1,2
Affiliations 3 institutions
  1. Department of Biochemistry, Microbiology and Immunology, Faculty of Medicine, University of Ottawa , Ottawa, Ontario K1H 8M5, Canada
  2. Emerging Pathogens Research Centre, Faculty of Medicine, University of Ottawa , Ottawa, Ontario K1H 8M5, Canada.
  3. Department of Biochemistry, Microbiology and Immunology, Faculty of Medicine, University of Ottawa , Ottawa, Ontario K1H 8M5, Canada.

Abstract

Little is known about the processes that enable influenza A viruses to jump into new host species. Here we show that the non-structural protein1 nucleotide substitution, A374G, encoding the D125G(GAT→GGT) mutation, which evolved during the adaptation of a human virus within a mouse host, activates a novel donor splice site in the non-structural gene, hence producing a novel influenza A viral protein, NS3. Using synonymous 125G mutations that do not activate the novel donor splice site, NS3 was shown to provide replicative gain-of-function. The protein sequence of NS3 is similar to NS1 protein but with an internal deletion of a motif comprised of three antiparallel β-strands spanning codons 126 to 168 in NS1. The NS1-125G(GGT) codon was also found in 33 natural influenza A viruses that were strongly associated with switching from avian to mammalian hosts, including human, swine and canine populations. In addition to the experimental human to mouse switch, the NS1-125G(GGT) codon was selected on avian to human transmission of the 1997 H5N1 and 1999 H9N2 lineages, as well as the avian to swine jump of 1979 H1N1 Eurasian swine influenza viruses, linking the NS1 125G(GGT) codon with host adaptation and switching among multiple species.

Supporting text Virus Host Location
host switch 2 influenza A virus 227 non-structural protein 1 1 NS gene 1 NS1 3 NS3 1 viral splicing 1

Evidence records

3 total
Functional Mechanism
3 records · 1 evidence types
Evidence type
3 records
OVE2057
Key finding

During adaptation of a human influenza A virus in a mouse host, an A374G nucleotide substitution causing the D125G mutation in NS1 generated a novel NS3 protein that increased viral replication.

Virus
Host
Not specified
Location
Not specified
Supporting text

The non-structural protein1 nucleotide substitution, A374G, encoding the D125G(GAT→GGT) mutation, which evolved during the adaptation of a human virus within a mouse host, activates a novel donor splice site in the non-structural gene, hence producing a novel influenza A viral protein, NS3. Using synonymous 125G mutations that do not activate the novel donor splice site, NS3 was shown to provide replicative gain-of-function.

Genes or proteins
NS1 | NS3
Mutations
A374G | D125G(GAT→GGT)
Mechanism types
replication adaptation | host-range expansion
OVE2058
Key finding

The NS1-125G(GGT) codon in influenza A virus is associated with host switching from avian to mammalian hosts including human, swine, and canine populations, indicating molecular adaptation linked to host range expansion.

Virus
Host
Not specified
Location
Not specified
Supporting text

The NS1-125G(GGT) codon was also found in 33 natural influenza A viruses that were strongly associated with switching from avian to mammalian hosts, including human, swine and canine populations.

Genes or proteins
NS1
Mutations
NS1-125G(GGT)
Mechanism types
host-range expansion
OVE2059
Key finding

The NS1-125G(GGT) codon was selected during avian to swine transmission of the 1979 H1N1 Eurasian swine influenza virus.

Virus
Host
Location
Not specified
Supporting text

The NS1-125G(GGT) codon was selected on avian to swine jump of 1979 H1N1 Eurasian swine influenza viruses.

Mechanism types
host adaptation | adaptive mutation