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PIP4K2C inhibition reverses autophagic flux impairment induced by SARS-CoV-2

GSE272840 Homo sapiens Expression profiling by high throughput sequencing 8 samples Submitted 2024/12/01 Platform GPL18573
Summary
In search for broad-spectrum antivirals, we discovered a small molecule inhibitor, RMC-113, that potently suppresses the replication of multiple RNA viruses including SARS-CoV-2 in human lung organoids. We demonstrated selective dual inhibition of the lipid kinases PIP4K2C and PIKfyve by RMC-113 and target engagement by its clickable analog. Advanced lipidomics revealed alteration of SARS-CoV-2-induced phosphoinositide signature by RMC-113 and linked its antiviral effect with functional PIP4K2C and PIKfyve inhibition. We discovered PIP4K2C’s roles in SARS-CoV-2 entry, RNA replication, and assembly/egress, validating it as a druggable antiviral target. Integrating proteomics, single-cell transcriptomics, and functional assays revealed that PIP4K2C regulates virus-induced impairment of autophagic flux. Reversing this autophagic flux impairment via promoting degradation of viral protein is a mechanism of antiviral action of RMC-113. These findings reveal virus-induced autophagy regulation via PIP4K2C, an understudied kinase, and propose dual inhibition of PIP4K2C and PIKfyve as a candidate strategy to combat emerging viruses.
Published in
PIP4K2C inhibition reverses autophagic flux impairment induced by SARS-CoV-2
Karim M, Mishra M, Lo CW et al. · Nature communications 2025 · PMID 40640184 · doi:10.1038/s41467-025-61759-1
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Also filed as BioProject PRJNA1139097 and SRA study SRP521574. Searching any of these in the dataset finder brings you back here.

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