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Dissecting Host-virus Interaction in Lytic Replication of a Model Herpesvirus
Published on: October 7, 2011
Parvovirus minute virus of mice induces a DNA damage response that facilitates viral replication
Richard O Adeyemi1, Sebastien Landry, Meredith E Davis
1University of Missouri-Columbia, School of Medicine, Columbia, Missouri, United States of America.
Abstract:
Infection by DNA viruses can elicit DNA damage responses (DDRs) in host cells. In some cases the DDR presents a block to viral replication that must be overcome, and in other cases the infecting agent exploits the DDR to facilitate replication. We find that low multiplicity infection with the autonomous parvovirus minute virus of mice (MVM) results in the activation of a DDR, characterized by the phosphorylation of H2AX, Nbs1, RPA32, Chk2 and p53. These proteins are recruited to MVM replication centers, where they co-localize with the main viral replication protein, NS1. The response is seen in both human and murine cell lines following infection with either the MVMp or MVMi strains. Replication of the virus is required for DNA damage signaling. Damage response proteins, including the ATM kinase, accumulate in viral-induced replication centers. Using mutant cell lines and specific kinase inhibitors, we show that ATM is the main transducer of the signaling events in the normal murine host. ATM inhibitors restrict MVM replication and ameliorate virus-induced cell cycle arrest, suggesting that DNA damage signaling facilitates virus replication, perhaps in part by promoting cell cycle arrest. Thus it appears that MVM exploits the cellular DNA damage response machinery early in infection to enhance its replication in host cells.
Insights
Minute virus of mice (MVM) infection activates host DNA damage responses (DDRs). This virus exploits the DDR, particularly ATM kinase signaling, to enhance its replication and promote cell cycle arrest.
Area of Science:
- Virology
- Molecular Biology
- Cell Biology
Background:
- DNA viruses can trigger host DNA damage responses (DDRs).
- Viruses either overcome or exploit DDRs for replication.
- Minute virus of mice (MVM) is an autonomous parvovirus.
Purpose of the Study:
- To investigate the interaction between MVM infection and host cell DDRs.
- To determine if MVM exploits DDRs to facilitate its replication.
Main Methods:
- Infection of human and murine cell lines with MVM.
- Analysis of DDR activation markers (e.g., H2AX, Nbs1, RPA32, Chk2, p53 phosphorylation).
- Co-localization studies of viral and host proteins.
- Use of mutant cell lines and kinase inhibitors (e.g., ATM inhibitors).
Main Results:
- MVM infection activates a DDR, evidenced by protein phosphorylation and recruitment to replication centers.
- Viral replication is necessary for DDR signaling.
- ATM kinase is identified as a key transducer of the DDR in MVM infection.
- ATM inhibition restricts MVM replication and reduces virus-induced cell cycle arrest.
Conclusions:
- MVM exploits the host cell's DNA damage response machinery.
- The DDR, particularly ATM signaling, facilitates MVM replication.
- Exploitation of DDR may involve promoting cell cycle arrest to enhance viral replication.
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