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Dissecting Host-virus Interaction in Lytic Replication of a Model Herpesvirus
Published on: October 7, 2011
Neutralizing innate host defenses to control viral translation in HSV-1 infected cells
1New York University School of Medicine, Department of Microbiology, MSB 214, New York, New York 10016, USA. ian.mohr@med.nyu.edu
Abstract:
Lytic replication of many viruses activates an innate host response designed to prevent the completion of the viral lifecycle, thus impeding the spread of the infection. One branch of the host's complex reaction functions to incapacitate the cellular translational machinery on which the synthesis of viral polypeptides completely depends. This is achieved through the activation of specific protein kinases that phosphorylate eIF2 on its alpha subunit and inactivate this critical translation initiation factor. However, as continued synthesis of viral proteins is required to assemble the viral progeny necessary to transmit the infection to neighboring cells, viruses have developed a variety of strategies to counter this cellular response. Genetic and biochemical studies with herpes simplex virus type 1 (HSV-1) have revealed that the virus produces at least two discrete products at different times during its replicative program that act to prevent the accumulation of phosphorylated eIF2alpha. The gamma(1)34.5 gene product is expressed first, encoding a regulatory subunit that binds the cellular protein phosphatase 1alpha and regenerates pools of active eIF2 by removing the inhibitory phosphate from the alpha subunit. The second function, encoded by the product of the Us11 gene, specifies a double-stranded RNA-binding protein that prevents activation of PKR, a cellular eIF2alpha kinase. Together, both proteins cooperate to overcome the antiviral response of the host and properly regulate translation in HSV-1-infected cells.
Insights
Herpes simplex virus type 1 (HSV-1) counters the host innate immune response by producing two proteins that prevent the shutdown of protein synthesis. These viral proteins ensure the production of viral progeny for infection spread.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Viral replication triggers innate host responses to limit infection.
- Host cells inhibit viral protein synthesis by inactivating the translation initiation factor eIF2.
- Viruses must overcome this cellular defense to complete their lifecycle.
Purpose of the Study:
- To investigate how herpes simplex virus type 1 (HSV-1) overcomes the host's antiviral translational shutdown.
- To identify viral factors that regulate protein synthesis during HSV-1 infection.
Main Methods:
- Genetic analysis of HSV-1 mutants.
- Biochemical assays to study protein interactions and enzyme activity.
Main Results:
- HSV-1 employs at least two proteins to counteract host translational inhibition.
- The gamma(1)34.5 gene product recruits protein phosphatase 1alpha to dephosphorylate eIF2 alpha subunit.
- The Us11 gene product inhibits PKR activation, a key eIF2 alpha kinase.
Conclusions:
- HSV-1 utilizes a two-pronged strategy involving gamma(1)34.5 and Us11 to subvert host antiviral defenses.
- These viral proteins cooperate to restore and regulate cellular translation for viral progeny production.
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