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Updated: Dec 15, 2025

siRNA Electroporation to Modulate Autophagy in Herpes Simplex Virus Type 1-Infected Monocyte-Derived Dendritic Cells
Published on: October 28, 2019
Canonical and Noncanonical Autophagy as Potential Targets for COVID-19
Melissa Bello-Perez1, Isabel Sola1, Beatriz Novoa2
1Department of Molecular and Cell Biology, National Center of Biotechnology (CNB-CSIC), Campus Universidad Autónoma de Madrid, Darwin 3, 28049 Madrid, Spain.
Abstract:
The SARS-CoV-2 pandemic necessitates a review of the molecular mechanisms underlying cellular infection by coronaviruses, in order to identify potential therapeutic targets against the associated new disease (COVID-19). Previous studies on its counterparts prove a complex and concomitant interaction between coronaviruses and autophagy. The precise manipulation of this pathway allows these viruses to exploit the autophagy molecular machinery while avoiding its protective apoptotic drift and cellular innate immune responses. In turn, the maneuverability margins of such hijacking appear to be so narrow that the modulation of the autophagy, regardless of whether using inducers or inhibitors (many of which are FDA-approved for the treatment of other diseases), is usually detrimental to viral replication, including SARS-CoV-2. Recent discoveries indicate that these interactions stretch into the still poorly explored noncanonical autophagy pathway, which might play a substantial role in coronavirus replication. Still, some potential therapeutic targets within this pathway, such as RAB9 and its interacting proteins, look promising considering current knowledge. Thus, the combinatory treatment of COVID-19 with drugs affecting both canonical and noncanonical autophagy pathways may be a turning point in the fight against this and other viral infections, which may also imply beneficial prospects of long-term protection.
Insights
Coronaviruses, including SARS-CoV-2, hijack cellular autophagy for replication. Modulating autophagy pathways, both canonical and noncanonical, shows promise for treating COVID-19 and other viral infections.
Area of Science:
- Molecular Biology
- Virology
- Cellular Biology
Background:
- Coronaviruses, including SARS-CoV-2, interact with the autophagy pathway during infection.
- Viruses manipulate autophagy machinery to promote replication and evade immune responses.
- Noncanonical autophagy pathways are increasingly recognized for their role in viral replication.
Purpose of the Study:
- To review the molecular mechanisms of coronavirus cellular infection.
- To identify potential therapeutic targets within autophagy pathways for COVID-19 treatment.
- To explore the role of noncanonical autophagy in coronavirus replication.
Main Methods:
- Literature review of studies on coronavirus-autophagy interactions.
- Analysis of molecular mechanisms of viral hijacking of autophagy.
- Identification of potential therapeutic targets, including RAB9.
Main Results:
- Coronaviruses precisely manipulate autophagy, balancing replication needs with immune evasion.
- Modulation of autophagy (inhibition or induction) generally hinders viral replication.
- Noncanonical autophagy pathways, involving targets like RAB9, are crucial for coronavirus replication.
Conclusions:
- Targeting both canonical and noncanonical autophagy pathways offers a promising therapeutic strategy for COVID-19.
- Combined drug treatments affecting autophagy may be effective against SARS-CoV-2 and other viral infections.
- This approach may also provide long-term protective benefits against viral diseases.
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