Poliovirus induces autophagic signaling independent of the ULK1 complex

Angel Corona Velazquez1, Abigail K Corona1, Kathryn A Klein2

  • 1a Department of Microbiology and Immunology , University of Maryland School of Medicine , Baltimore , MD , USA.

Autophagy
|June 23, 2018
PubMed

Insights

Poliovirus (PV) hijacks autophagy independently of the ULK1 complex, reducing key autophagy proteins and cleaving SQSTM1. This novel mechanism generates autophagosomes without relying on the canonical autophagy signaling pathway.

Area of Science:

  • Virology
  • Cell Biology
  • Molecular Biology

Background:

  • Poliovirus (PV) subverts host autophagy for replication.
  • The canonical autophagy signaling complex involves ULK1/2 kinases, ATG13, RB1CC1, and ATG101.

Purpose of the Study:

  • To investigate if PV utilizes the canonical ULK1 complex for autophagy activation.
  • To understand PV's manipulation of autophagy signaling and protein degradation.

Main Methods:

  • Assessing viral replication in the presence of autophagy components.
  • Analyzing protein levels of ULK1, ULK2, ATG13, RB1CC1, ATG101, and SQSTM1 during PV infection.
  • Evaluating the impact of ULK1/2 manipulation on viral replication.

Main Results:

  • PV induces autophagic signals independently of the ULK1 complex.
  • ULK1/2, ATG13, RB1CC1, and ATG101 protein levels are reduced during PV infection.
  • SQSTM1 is cleaved, not conventionally degraded, and ULK1 degradation correlates with increased autophagic signaling.

Conclusions:

  • PV employs a novel ULK1-independent mechanism to generate autophagosomes.
  • Viral-induced cleavage of SQSTM1 may impact autophagic flux.
  • PV exhibits a sophisticated interaction with the autophagy machinery, bypassing canonical signaling pathways.

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