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Targeting ubiquitin-independent proteasome with small molecule increases susceptibility in pan-KRAS mutant cancers

GSE284241 Homo sapiens Genome binding/occupancy profiling by high throughput sequencing 6 samples Submitted 2025/03/19 Platform GPL24676
Summary
Despite advances in the development of direct KRAS inhibitors, KRAS-mutant cancers continue to exhibit resistance to the currently available therapies. Here, we identified REGγ as a mutant KRAS-associated factor that enhances REGγ transcription through the KRAS intermediate NRF2, suggesting that the REGγ-proteasome is a potential target for pan-KRAS inhibitor development. We elucidated a novel mechanism involving the KRAS/NRF2/REGγ regulatory axis, which links activated KRAS to the ATP- and ubiquitin-independent proteasome. We subsequently developed RLY01, a novel REGγ-proteasome inhibitor that effectively suppressed tumor growth in KRAS-mutant cancer models and lung cancer organoids. Notably, the combination of RLY01 and the KRASG12C inhibitor AMG510 exhibited enhanced antitumor efficacy in KRASG12C cancer cells. Collectively, our data support the hypothesis that KRAS mutations enhance the capacity of the REGγ-proteasome by increasing REGγ expression, highlighting the potential of ubiquitin-independent proteasome inhibition as a therapeutic approach for pan-KRAS mutant cancers.
Published in
Targeting ubiquitin-independent proteasome with small molecule increases susceptibility in pan-KRAS-mutant cancer models
Shen S, Zhang Q, Wang Y et al. · The Journal of clinical investigation 2025 · PMID 40091835 · doi:10.1172/JCI185278
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Also filed as BioProject PRJNA1198056 and SRA study SRP551349. Searching any of these in the dataset finder brings you back here.

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