PB2 mutations D701N and S714R promote adaptation of an influenza H5N1 virus to a mammalian host.

Volker Czudai-Matwich1 Anna Otte2 Mikhail Matrosovich1 Gülsah Gabriel2 Hans-Dieter Klenk3
Affiliations 3 institutions
  1. Institute of Virology, Philipps University, Marburg, Germany.
  2. Heinrich Pette Institute, Leibniz Institute for Experimental Virology, Hamburg, Germany.
  3. Institute of Virology, Philipps University, Marburg, Germany [email protected].

Abstract

Mutation D701N in the PB2 protein is known to play a prominent role in the adaptation of avian influenza A viruses to mammalian hosts. In contrast, little is known about the nearby mutations S714I and S714R, which have been observed in some avian influenza viruses highly pathogenic for mammals. We have generated recombinant H5N1 viruses with PB2 displaying the avian signature 701D or the mammalian signature 701N and serine, isoleucine, and arginine at position 714 and compared them for polymerase activity and virus growth in avian and mammalian cells, as well as for pathogenicity in mice. Mutation D701N led to an increase in polymerase activity and replication efficiency in mammalian cells and in mouse pathogenicity, and this increase was significantly enhanced when mutation D701N was combined with mutation S714R. Stimulation by mutation S714I was less distinct. These observations indicate that PB2 mutation S714R, in combination with the mammalian signature at position 701, has the potential to promote the adaptation of an H5N1 virus to a mammalian host. Influenza A/H5N1 viruses are avian pathogens that have pandemic potential, since they are spread over large parts of Asia, Africa, and Europe and are occasionally transmitted to humans. It is therefore of high scientific interest to understand the mechanisms that determine the host specificity and pathogenicity of these viruses. It is well known that the PB2 subunit of the viral polymerase is an important host range determinant and that PB2 mutation D701N plays an important role in virus adaptation to mammalian cells. In the present study, we show that mutation S714R is also involved in adaptation and that it cooperates with D701N in exposing a nuclear localization signal that mediates importin-α binding and entry of PB2 into the nucleus, where virus replication and transcription take place.

Supporting text Virus Host Location
Adaptation, Physiological 33 Animals 1948 Dogs 176 HEK293 Cells 61 Humans 1440 Influenza A Virus, H5N1 Subtype 300 Influenza, Human 286 Madin Darby Canine Kidney Cells 36 Mammals 92 Mice 253 Mice, Inbred BALB C 73 Mutation 209 Orthomyxoviridae Infections 228 RNA-Dependent RNA Polymerase 49 Viral Proteins 152 PB2 protein, Influenzavirus A 27

Evidence records

3 total
Functional Mechanism
3 records · 1 evidence types
Evidence type
3 records
OVE1741
Key finding

PB2 mutation D701N in H5N1 increases polymerase activity, replication in mammalian cells, and pathogenicity in mice, indicating adaptation to mammalian hosts.

Virus
Host
Not specified
Location
Not specified
Supporting text

Mutation D701N led to an increase in polymerase activity and replication efficiency in mammalian cells and in mouse pathogenicity.

Genes or proteins
PB2
Mutations
D701N
Mechanism types
replication adaptation | host-range expansion | virulence adaptation
OVE1742
Key finding

PB2 mutation S714R enhances D701N-associated polymerase activity and replication, promoting mammalian adaptation of H5N1 virus.

Virus
Host
Not specified
Location
Not specified
Supporting text

This increase was significantly enhanced when mutation D701N was combined with mutation S714R. These observations indicate that PB2 mutation S714R, in combination with the mammalian signature at position 701, has the potential to promote the adaptation of an H5N1 virus to a mammalian host.

Genes or proteins
PB2
Mutations
S714R | D701N
Mechanism types
replication adaptation | host-range expansion
OVE1743
Key finding

PB2 mutation S714R cooperates with D701N to expose a nuclear localization signal that mediates importin-α binding and nuclear entry, contributing to mammalian adaptation of H5N1.

Virus
Host
Not specified
Location
Not specified
Supporting text

We show that mutation S714R is also involved in adaptation and that it cooperates with D701N in exposing a nuclear localization signal that mediates importin-α binding and entry of PB2 into the nucleus.

Genes or proteins
PB2
Host factors
importin-α
Mutations
S714R | D701N
Mechanism types
host entry | replication adaptation | host-range expansion