PADI-dependent mitochondrial adaptation drives resistance to KRAS inhibitors

KRAS(ON) and KRAS(OFF) inhibitors have improved the treatment of KRAS-driven tumors, yet resistance remains a major challenge. Here, we identify PADI1 and PADI3 as negative prognostic markers in KRAS-mutant colorectal and pancreatic cancers. KRAS-driven metabolic rewiring sustains their expression through an enhancer within the PADI1 locus. Although KRAS inhibition suppresses PADI1/3 expression in sensitive cells, resistant models maintain elevated PADI1/3 expression and accumulate intracellular calcium, sustaining PADI-dependent adaptive survival. Pharmacological inhibition of PADIs synergizes with KRAS(ON) and KRAS(OFF) inhibitors in two- and three-dimensional cancer models, restores sensitivity in resistant cells, and enhances antitumor activity in vivo . Integrated transcriptomic and proteomic analyses identify HSPA9/Mortalin as a critical citrullinated effector. PADI3-mediated citrullination enhances Mortalin ATPase activity and ATP/ADP cycling, whereas loss of citrullination correlates with apoptosis. Disruption of this adaptive circuitry triggers mitochondrial dysfunction, caspase activation, and non-lytic apoptosis without detectable DAMP release, revealing a therapeutic vulnerability of KRAS-driven tumors.

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Publication Details

Journal
Cell Reports
Published
2026-09-17
DOI
https://doi.org/10.1016/j.celrep.2026.118016
Primary Topic
Mitochondrial Function and Pathology
Type
article
Field-Weighted Citation Impact
0.00

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article

PADI-dependent mitochondrial adaptation drives resistance to KRAS inhibitors

Francesca D’Este, Himanshi Choudhary, Raffaella Picco, Danilo Licastro et al.
Cell Reports
Mitochondrial Function and Pathology
article

PADI-dependent mitochondrial adaptation drives resistance to KRAS inhibitors

Francesca D’Este, Himanshi Choudhary, Raffaella Picco, Danilo Licastro, Annalisa Ferino, Mariachiara Gani, Vanessa Tolotto, Riccardo Sgarra, Valentina Rapozzi, Yuhei Ohta, Eros Di Giorgio, Francesca Agostini, Leonard Barasa, Luca Secco, Luigi E. Xodo, Lavinia De Pino, Hidehiko Nakagawa, Paul R. Thompson
article en

Abstract

KRAS(ON) and KRAS(OFF) inhibitors have improved the treatment of KRAS-driven tumors, yet resistance remains a major challenge. Here, we identify PADI1 and PADI3 as negative prognostic markers in KRAS-mutant colorectal and pancreatic cancers. KRAS-driven metabolic rewiring sustains their expression through an enhancer within the PADI1 locus. Although KRAS inhibition suppresses PADI1/3 expression in sensitive cells, resistant models maintain elevated PADI1/3 expression and accumulate intracellular calcium, sustaining PADI-dependent adaptive survival. Pharmacological inhibition of PADIs synergizes with KRAS(ON) and KRAS(OFF) inhibitors in two- and three-dimensional cancer models, restores sensitivity in resistant cells, and enhances antitumor activity in vivo . Integrated transcriptomic and proteomic analyses identify HSPA9/Mortalin as a critical citrullinated effector. PADI3-mediated citrullination enhances Mortalin ATPase activity and ATP/ADP cycling, whereas loss of citrullination correlates with apoptosis. Disruption of this adaptive circuitry triggers mitochondrial dysfunction, caspase activation, and non-lytic apoptosis without detectable DAMP release, revealing a therapeutic vulnerability of KRAS-driven tumors.

Cell ReportsVol. 45(10)
University of Udine (IT), University of Trieste (IT), University of Massachusetts Chan Medical School (US), AREA Science Park (IT), Nagoya City University (JP)
Fondazione AIRC per la ricerca sul cancro ETS, Worldwide Cancer Research, Università degli Studi di Udine, Ministero dell'Istruzione e del Merito
Zero hunger
Openalex Percentile: Top 18%
Mitochondrial Function and Pathology
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