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Published on: October 28, 2019
Modulation of lysosomal function as a therapeutic approach for coronaviral infections
Yuan Liu1, Travis Lear1, Mads Larsen1
1University of Pittsburgh.
Abstract:
The endo-lysosomal pathway plays an important role in pathogen clearance and both bacteria and viruses have evolved complex mechanisms to evade this host system. Here, we describe a novel aspect of coronaviral infection, whereby the master transcriptional regulator of lysosome biogenesis - TFEB - is targeted for proteasomal-mediated degradation upon viral infection. Through mass spectrometry analysis and an unbiased siRNA screen, we identify that TFEB protein stability is coordinately regulated by the E3 ubiquitin ligase subunit DCAF7 and the PAK2 kinase. In particular, viral infection triggers marked PAK2 activation, which in turn, phosphorylates and primes TFEB for ubiquitin-mediated protein degradation. Deletion of either DCAF7 or PAK2 blocks viral-mediated TFEB degradation and protects against viral-induced cytopathic effects. We further derive a series of small molecules that interfere with the DCAF7-TFEB interaction. These agents inhibit viral-triggered TFEB degradation and demonstrate broad anti-viral activities including attenuating in vivo SARS-CoV-2 infection. Together, these results delineate a viral-triggered pathway that disables the endogenous cellular system that maintains lysosomal function and suggest that small molecule inhibitors of the E3 ubiquitin ligase DCAF7 represent a novel class of endo-lysosomal, host-directed, anti-viral therapies.
Insights
Coronaviruses hijack host cells by degrading TFEB, a key regulator of lysosome function. Inhibiting this process with small molecules shows broad antiviral activity, including against SARS-CoV-2.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- The endo-lysosomal pathway is crucial for clearing pathogens like viruses.
- Viruses have evolved mechanisms to evade host defense systems, including the endo-lysosomal pathway.
Approach:
- Investigated the role of Transcription Factor EB (TFEB) in coronaviral infection.
- Utilized mass spectrometry and siRNA screening to identify host factors regulating TFEB stability.
- Developed small molecules targeting the DCAF7-TFEB interaction.
Key Points:
- Coronaviral infection triggers the proteasomal degradation of TFEB, a master regulator of lysosome biogenesis.
- DCAF7 and PAK2 kinase coordinate TFEB degradation via phosphorylation and ubiquitination.
- Inhibiting DCAF7 or PAK2 prevents TFEB degradation and protects cells from viral damage.
- Small molecules targeting DCAF7-TFEB interaction exhibit broad antiviral activity, including against SARS-CoV-2 in vivo.
Conclusions:
- Coronaviruses disable host lysosomal function by degrading TFEB through a DCAF7/PAK2-mediated pathway.
- Targeting the DCAF7-TFEB interaction with small molecules offers a novel host-directed antiviral therapy approach.
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