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Akt enhances the vulnerability of cancer cells to VCP/p97 inhibition-mediated paraptosis

Authors
Lee, DM | Kim, IY | Lee, HJ | Seo, MJ | Cho, MY  | Lee, HI | Yoon, G  | Ji, JH | Park, SS | Jeong, SY | Choi, EK | Choi, YH | Yun, CO | Yeo, M | Kim, E | Choi, KS
Citation
Cell death & disease, 15(1). : 48-48, 2024
Journal Title
Cell death & disease
ISSN
2041-4889
Abstract
Valosin-containing protein (VCP)/p97, an AAA+ ATPase critical for maintaining proteostasis, emerges as a promising target for cancer therapy. This study reveals that targeting VCP selectively eliminates breast cancer cells while sparing non-transformed cells by inducing paraptosis, a non-apoptotic cell death mechanism characterized by endoplasmic reticulum and mitochondria dilation. Intriguingly, oncogenic HRas sensitizes non-transformed cells to VCP inhibition-mediated paraptosis. The susceptibility of cancer cells to VCP inhibition is attributed to the non-attenuation and recovery of protein synthesis under proteotoxic stress. Mechanistically, mTORC2/Akt activation and eIF3d-dependent translation contribute to translational rebound and amplification of proteotoxic stress. Furthermore, the ATF4/DDIT4 axis augments VCP inhibition-mediated paraptosis by activating Akt. Given that hyperactive Akt counteracts chemotherapeutic-induced apoptosis, VCP inhibition presents a promising therapeutic avenue to exploit Akt-associated vulnerabilities in cancer cells by triggering paraptosis while safeguarding normal cells.
MeSH

DOI
10.1038/s41419-024-06434-x
PMID
38218922
Appears in Collections:
Journal Papers > School of Medicine / Graduate School of Medicine > Microbiology
Journal Papers > School of Medicine / Graduate School of Medicine > Biochemistry & Molecular Biology
Ajou Authors
윤, 계순  |  조, 미영  |  최, 경숙
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