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Targeting NUPR1-dependent stress granules formation to induce synthetic lethality in KrasG12D-driven tumors

Authors :
Patricia Santofimia-Castaño
Nicolas Fraunhoffer
Xi Liu
Ivan Fernandez Bessone
Marina Pasca di Magliano
Stephane Audebert
Luc Camoin
Matias Estaras
Manon Brenière
Mauro Modesti
Gwen Lomberk
Raul Urrutia
Philippe Soubeyran
Jose Luis Neira
Juan Iovanna
Source :
EMBO Molecular Medicine, Vol 16, Iss 3, Pp 475-505 (2024)
Publication Year :
2024
Publisher :
Springer Nature, 2024.

Abstract

Abstract We find that NUPR1, a stress-associated intrinsically disordered protein, induced droplet formation via liquid–liquid phase separation (LLPS). NUPR1-driven LLPS was crucial for the creation of NUPR1-dependent stress granules (SGs) in pancreatic cancer cells since genetic or pharmacological inhibition by ZZW-115 of NUPR1 activity impeded SGs formation. The KrasG12D mutation induced oncogenic stress, NUPR1 overexpression, and promoted SGs development. Notably, enforced NUPR1 expression induced SGs formation independently of mutated KrasG12D. Mechanistically, KrasG12D expression strengthened sensitivity to NUPR1 inactivation, inducing cell death, activating caspase 3 and releasing LDH. Remarkably, ZZW-115-mediated SG-formation inhibition hampered the development of pancreatic intraepithelial neoplasia (PanINs) in Pdx1-cre;LSL-Kras G12D (KC) mice. ZZW-115-treatment of KC mice triggered caspase 3 activation, DNA fragmentation, and formation of the apoptotic bodies, leading to cell death, specifically in KrasG12D-expressing cells. We further demonstrated that, in developed PanINs, short-term ZZW-115 treatment prevented NUPR1-associated SGs presence. Lastly, a four-week ZZW-115 treatment significantly reduced the number and size of PanINs in KC mice. This study proposes that targeting NUPR1-dependent SGs formation could be a therapeutic approach to induce cell death in KrasG12D-dependent tumors.

Details

Language :
English
ISSN :
17574684
Volume :
16
Issue :
3
Database :
Directory of Open Access Journals
Journal :
EMBO Molecular Medicine
Publication Type :
Academic Journal
Accession number :
edsdoj.6378f109e874a1da4c8222d7dc3b37c
Document Type :
article
Full Text :
https://doi.org/10.1038/s44321-024-00032-2