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Updated: May 5, 2026

Particle Agglutination Method for Poliovirus Identification
Published on: April 20, 2011
Intracellular vesicle acidification promotes maturation of infectious poliovirus particles
Alexsia L Richards1, William T Jackson
1Department of Microbiology and Molecular Genetics, Medical College of Wisconsin, Milwaukee, Wisconsin, United States of America.
Abstract:
The autophagic pathway acts as part of the immune response against a variety of pathogens. However, several pathogens subvert autophagic signaling to promote their own replication. In many cases it has been demonstrated that these pathogens inhibit or delay the degradative aspect of autophagy. Here, using poliovirus as a model virus, we report for the first time bona fide autophagic degradation occurring during infection with a virus whose replication is promoted by autophagy. We found that this degradation is not required to promote poliovirus replication. However, vesicular acidification, which in the case of autophagy precedes delivery of cargo to lysosomes, is required for normal levels of virus production. We show that blocking autophagosome formation inhibits viral RNA synthesis and subsequent steps in the virus cycle, while inhibiting vesicle acidification only inhibits the final maturation cleavage of virus particles. We suggest that particle assembly, genome encapsidation, and virion maturation may occur in a cellular compartment, and we propose the acidic mature autophagosome as a candidate vesicle. We discuss the implications of our findings in understanding the late stages of poliovirus replication, including the formation and maturation of virions and egress of infectious virus from cells.
Insights
Poliovirus infection involves autophagic degradation, but this process isn't essential for viral replication. Acidification of vesicles, however, is crucial for poliovirus production and maturation.
Area of Science:
- Cell Biology
- Virology
- Immunology
Background:
- Autophagy is an immune response against pathogens.
- Viruses often manipulate autophagy for replication.
- Pathogens typically inhibit or delay autophagy's degradative function.
Purpose of the Study:
- To investigate autophagic degradation during poliovirus infection.
- To determine the role of autophagic degradation in poliovirus replication.
- To explore the function of vesicular acidification in poliovirus lifecycle.
Main Methods:
- Utilizing poliovirus as a model system.
- Analyzing autophagosome formation and vesicle acidification.
- Assessing viral RNA synthesis and particle maturation.
Main Results:
- Autophagic degradation occurs during poliovirus infection but is not required for replication.
- Blocking autophagosome formation inhibits viral RNA synthesis.
- Vesicular acidification is essential for poliovirus production and virion maturation.
Conclusions:
- Autophagy is involved in the poliovirus lifecycle beyond replication.
- Acidic mature autophagosomes are proposed as a cellular compartment for poliovirus assembly, encapsidation, and maturation.
- Findings offer insights into late-stage poliovirus replication, virion formation, and egress.
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