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Activation of the Mason-Pfizer monkey virus protease within immature capsids in vitro
1Department of Medicine, Division of Infectious Diseases, University of Alabama at Birmingham, 35294, USA. sdparker@uab.edu
Abstract:
For all retroviruses, the completion of the viral budding process correlates with the activation of the viral protease by an unknown mechanism, and, as the structural (Gag) polyproteins are cleaved by the viral protease, maturation of the immature virus-like particle into an infectious virion. Unlike most retroviruses, the Mason-Pfizer monkey virus Gag polyproteins assemble into immature capsids within the cytoplasm of the cell before the viral budding event. The results reported here describe a unique experimental system in which Mason-Pfizer monkey virus immature capsids are removed from the cell, and the protease is activated in vitro by the addition of a reducing agent. The cleavage of the protease from the precursor form is a primary event, which proceeds with a half time of 14 min, and is followed by authentic processing of the Gag polyproteins. Activity of the viral protease in vitro depends on pH, with an increase in catalytic rates at acidic and neutral pH. The initiation of protease activity within immature capsids in vitro demonstrates that viral protease activity is sensitive to oxidation-reduction conditions, and that the viral protease can be activated in the absence of viral budding.
Insights
Mason-Pfizer monkey virus protease activation occurs in vitro using a reducing agent, independent of viral budding. This protease cleavage from its precursor form initiates Gag polyprotein processing for virion maturation.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Retroviral maturation relies on viral protease activation during budding.
- Mason-Pfizer monkey virus (MPMV) exhibits unique Gag polyprotein assembly before budding.
Purpose of the Study:
- To investigate the mechanism of MPMV protease activation.
- To determine if MPMV protease can be activated independently of the viral budding process.
Main Methods:
- Developed an in vitro system using isolated MPMV immature capsids.
- Activated the viral protease using a reducing agent.
- Assessed protease activity at various pH levels.
Main Results:
- MPMV protease activation occurred in vitro with a half-time of 14 minutes.
- Protease activation was followed by Gag polyprotein processing.
- Protease activity was dependent on pH, with optimal rates at acidic and neutral conditions.
- In vitro activation demonstrated protease sensitivity to oxidation-reduction conditions.
Conclusions:
- MPMV protease activation is sensitive to redox conditions and can be initiated in vitro.
- Protease activation and subsequent Gag polyprotein processing can occur independently of viral budding.