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Published on: November 1, 2011
Non-lytic spread of poliovirus requires the nonstructural protein 3CD
David Aponte-Diaz1, Jayden M Harris1, Tongjia Ella Kang1
1Department of Microbiology and Immunology, The University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, USA.
Abstract:
Non-enveloped viruses like poliovirus (PV) have evolved the capacity to spread by non-lytic mechanisms. For PV, this mechanism exploits the host secretory autophagy pathway. Virions are selectively incorporated into autophagosomes, double-membrane vesicles that travel to the plasma membrane, fuse, and release single-membrane vesicles containing virions. Loading of cellular cargo into autophagosomes relies on direct or indirect interactions with microtubule-associated protein 1B-light chain 3 (LC3) that are mediated by motifs referred to as LC3-interaction regions (LIRs). We have identified a PV mutant with a severe defect in non-lytic spread. An F-to-Y substitution in a putative LIR of the nonstructural protein 3CD prevented virion incorporation into LC3-positive autophagosomes and virion trafficking to the plasma membrane for release. Using high-angle annular dark-field scanning transmission electron microscopy to monitor PV-induced autophagosome biogenesis, for the first time, we show that virus-induced autophagic signals yield normal autophagosomes, even in the absence of virions. The F-to-Y derivative of PV 3CD was unable to support normal autophagosome biogenesis. Together, these studies make a compelling case for a direct role of a viral nonstructural protein in the formation and loading of the vesicular carriers used for non-lytic spread that may depend on the proper structure, accessibility, and/or dynamics of its LIR. The studies of PV 3CD protein reported here will hopefully provoke a more deliberate look at the presence and function of LIR motifs in viral proteins of viruses known to use autophagy as the basis for non-lytic spread.
Insights
Poliovirus uses autophagy for non-lytic spread. A mutation in the 3CD protein
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Non-enveloped viruses, like poliovirus (PV), utilize non-lytic spread mechanisms.
- Poliovirus hijacks the host secretory autophagy pathway for viral dissemination.
- Autophagosome loading involves microtubule-associated protein 1B-light chain 3 (LC3) and LC3-interaction regions (LIRs).
Purpose of the Study:
- To investigate the role of a putative LC3-interaction region (LIR) in the poliovirus (PV) nonstructural protein 3CD.
- To elucidate the mechanism of PV non-lytic spread via the autophagy pathway.
- To determine the function of PV 3CD in autophagosome biogenesis and virion loading.
Main Methods:
- Generated a PV mutant with an F-to-Y substitution in a putative LIR of the 3CD protein.
- Utilized high-angle annular dark-field scanning transmission electron microscopy to monitor autophagosome biogenesis.
- Assessed virion incorporation into autophagosomes and trafficking to the plasma membrane.
Main Results:
- The PV 3CD F-to-Y mutant exhibited a severe defect in non-lytic spread.
- The mutation prevented virion incorporation into LC3-positive autophagosomes.
- The mutant 3CD protein failed to support normal autophagosome biogenesis, despite normal autophagosomes forming without virions.
Conclusions:
- A viral nonstructural protein (PV 3CD) plays a direct role in the formation and cargo loading of vesicles for non-lytic spread.
- The LIR motif in PV 3CD is crucial for autophagosome biogenesis and virion incorporation.
- This study highlights the importance of LIR motifs in viral proteins of autophagy-dependent viruses.
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