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Poliovirus protease 3C mediates cleavage of microtubule-associated protein 4
M Joachims1, K S Harris, D Etchison
1Department of Microbiology, Molecular Genetics and Immunology, University of Kansas Medical Center, Kansas City 66160, USA.
Abstract:
Poliovirus infection results in a number of host cell changes, including specific alterations in cellular proteins. This study further characterizes the cleavage of a cytoskeletal protein, microtubule-associated protein 4 (MAP-4) and investigates the identity of the viral protease which mediates its cleavage. MAP-4 cleavage by poliovirus was previously identified using a monoclonal antibody (M. Joachims and D. Etchison, 1992, J. Virol. 66, 5997-5804). In this study, MAP-4 cleavage was found to occur in cells infected by only some picornaviruses, poliovirus and human rhinovirus 14. Infection by other types of viruses, vesicular stomatitis virus and adenovirus, or by other types of picornaviruses, encephalomyocarditis virus, did not result in MAP-4 cleavage. To determine the viral mediator of MAP-4 cleavage, the effects of purified poliovirus proteases on MAP-4 integrity were examined by immunoblot. When MAP-4 substrates were incubated with concentrations of poliovirus 2A that were more than sufficient to induce p220 cleavage, there was no effect on MAP-4. However, when MAP-4 substrates were incubated with purified 3C protease (3Cpro), cleavage products were detected that were identical in size to those generated in vivo in poliovirus-infected cells; the use of a mutant 3C protease did not result in MAP-4 cleavage. Cleavage of MAP-4 was also demonstrated with purified 3CDpro, and the in vitro cleavage kinetics were examined. Indirect immunofluorescence revealed that MAP-4 cleavage also correlated with a marked "collapse" of microtubules during late infection, indicating a possible relationship between 3Cpro-mediated MAP-4 cleavage and changes in the microtubule system of infected cells.
Insights
Poliovirus infection cleaves microtubule-associated protein 4 (MAP-4), a process mediated by the viral 3C protease (3Cpro). This cleavage correlates with microtubule collapse in infected cells.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Poliovirus infection induces host cell protein alterations.
- Microtubule-associated protein 4 (MAP-4) cleavage was previously observed in poliovirus-infected cells.
Purpose of the Study:
- To characterize MAP-4 cleavage during picornavirus infections.
- To identify the specific viral protease responsible for MAP-4 cleavage.
Main Methods:
- MAP-4 cleavage was assessed in cells infected with various viruses.
- Purified poliovirus proteases (2A and 3C) were incubated with MAP-4 substrates.
- Immunoblotting and indirect immunofluorescence were used to analyze MAP-4 integrity and microtubule structure.
Main Results:
- MAP-4 cleavage occurred specifically in poliovirus and human rhinovirus 14 infected cells, but not with other tested viruses.
- Purified poliovirus 3C protease (3Cpro), but not 2A protease, directly cleaved MAP-4, generating products identical to in vivo cleavage.
- MAP-4 cleavage correlated with microtubule collapse in infected cells.
Conclusions:
- Poliovirus 3C protease (3Cpro) is the viral protease that mediates MAP-4 cleavage.
- 3Cpro-mediated MAP-4 cleavage is linked to alterations in the host cell microtubule system during poliovirus infection.