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Updated: Aug 26, 2025

Purification of High Yield Extracellular Vesicle Preparations Away from Virus
Published on: September 12, 2019
Membrane-assisted assembly and selective secretory autophagy of enteroviruses
Selma Dahmane1,2,3, Adeline Kerviel4, Dustin R Morado5
1Department of Medical Biochemistry and Biophysics, Umeå University, Umeå, Sweden.
Abstract:
Enteroviruses are non-enveloped positive-sense RNA viruses that cause diverse diseases in humans. Their rapid multiplication depends on remodeling of cytoplasmic membranes for viral genome replication. It is unknown how virions assemble around these newly synthesized genomes and how they are then loaded into autophagic membranes for release through secretory autophagy. Here, we use cryo-electron tomography of infected cells to show that poliovirus assembles directly on replication membranes. Pharmacological untethering of capsids from membranes abrogates RNA encapsidation. Our data directly visualize a membrane-bound half-capsid as a prominent virion assembly intermediate. Assembly progression past this intermediate depends on the class III phosphatidylinositol 3-kinase VPS34, a key host-cell autophagy factor. On the other hand, the canonical autophagy initiator ULK1 is shown to restrict virion production since its inhibition leads to increased accumulation of virions in vast intracellular arrays, followed by an increased vesicular release at later time points. Finally, we identify multiple layers of selectivity in virus-induced autophagy, with a strong selection for RNA-loaded virions over empty capsids and the segregation of virions from other types of autophagosome contents. These findings provide an integrated structural framework for multiple stages of the poliovirus life cycle.
Insights
Poliovirus assembly occurs directly on replication membranes, requiring specific host factors like VPS34. This study reveals how viruses hijack cellular autophagy for release, impacting viral pathogenesis.
Area of Science:
- Virology
- Cell Biology
- Structural Biology
Background:
- Enteroviruses, including poliovirus, are RNA viruses causing human diseases.
- Viral replication involves cytoplasmic membrane remodeling, but assembly and release mechanisms remain unclear.
Purpose of the Study:
- To elucidate the structural mechanisms of poliovirus assembly and release via secretory autophagy.
- To identify host factors involved in viral replication and virion maturation.
Main Methods:
- Cryo-electron tomography of infected cells.
- Pharmacological manipulation of viral and host factors.
- Analysis of autophagic pathways and virion selectivity.
Main Results:
- Poliovirus assembly initiates on replication membranes, with membrane-bound half-capsids as intermediates.
- VPS34 activity is crucial for assembly progression, while ULK1 restricts virion production.
- Selective autophagy pathways package RNA-loaded virions, excluding empty capsids and other cellular cargo.
Conclusions:
- Poliovirus utilizes a unique membrane-associated assembly pathway.
- Host autophagy factors play dual roles in regulating viral replication and release.
- Viruses exhibit sophisticated mechanisms for hijacking cellular machinery for efficient propagation.
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