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- Title
- Anti-proteolytic regulation of KRAS by USP9X/NDRG3 in KRAS-driven cancer development
- Author(s)
- Han Koo; Kyung Chan Park; Hyun Ahm Sohn; Minho Kang; D J Kim; Z Y Park; S Park; S H Min; Seong-Hwan Park; Yeon Mi You; Yohan Han; Bo Kyung Kim; Chul-Ho Lee; Y S Kim; S J Chung; Young Il Yeom; Dong Chul Lee
- Bibliographic Citation
- Nature Communications, vol. 16, pp. 628-628
- Publication Year
- 2025
- Abstract
- Cancers with activating mutations of KRAS show a high prevalence but remain intractable, requiring innovative strategies to overcome the poor targetability of KRAS. Here, we report that KRAS expression is post-translationally up-regulated through deubiquitination when the scaffolding function of NDRG3 (N-Myc downstream-regulated gene 3) promotes specific interaction between KRAS and a deubiquitinating enzyme, USP9X. In KRAS-mutant cancer cells KRAS protein expression, downstream signaling, and cell growth are highly dependent on NDRG3. In conditional KrasG12D knock-in mouse models of pancreatic ductal adenocarcinoma, Ndrg3 depletion abolishes Kras protein expression and suppresses intraepithelial neoplasia formation in pancreas. Mechanistically, KRAS protein binds to the C-terminal serine/threonine-rich region of NDRG3, subsequently going through deubiquitination by USP9X recruited to the complex. This interaction can be disrupted in a dominant-negative manner by a C-terminal NDRG3 fragment that binds KRAS but is defective in USP9X binding, highly suppressing KRAS protein expression and KRAS-driven cell growth. In summary, KRAS-driven cancer development critically depends on the deubiquitination of KRAS protein mediated by USP9X/NDRG3, and KRAS-addicted cancers could be effectively targeted by inhibiting the KRAS-NDRG3 interaction.
- ISSN
- 2041-1723
- Publisher
- Springer-Nature Pub Group
- Full Text Link
- http://dx.doi.org/10.1038/s41467-024-54476-8
- Type
- Article
- Appears in Collections:
- Division of A.I. & Biomedical Research > Genomic Medicine Research Center > 1. Journal Articles
Ochang Branch Institute > Division of National Bio-Infrastructure > 1. Journal Articles
- Files in This Item:
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