Targeting CRTC2 reverses <i>STK11</i> mutant NSCLC tumor resistance to immunotherapy

D Dimitri Robay (Novartis Biomedical Research, Oncology) O Ole Ackermann (Novartis Biomedical Research, Oncology) L Laurent Laborde (Novartis Biomedical Research, Oncology) X Xingyi Shi (Novartis Biomedical Research, Oncology) F Federico Oreglia (Novartis Biomedical Research, Oncology) R Ramona Stump (Novartis Biomedical Research, Oncology) S Sabina Ciaghi (Novartis Biomedical Research, Oncology) G Giorgio G. Galli L Laura Holzer (Novartis Biomedical Research, Oncology) L Lorraine Villemin (Novartis Biomedical Research, Oncology) J Joel Wagner (Novartis Biomedical Research, Oncology) J Jincheng Wu (Novartis Biomedical Research, Oncology) L Lang Ho Lee (Novartis Biomedical Research, Oncology) C Claudia Bossen (Novartis Pharma) T Thanos P. Mourikis M Millicent Gabriel (Novartis Biomedical Research, Oncology) D David Ruddy (Novartis Biomedical Research, Oncology) H Haiyan Yu (State Key Laboratory of Tropical Oceanography, South China Sea Institute of Oceanology, Guangdong Provincial Key Laboratory of Applied Marine Biology, Chinese Academy of Sciences) C Cory Johannessen (Novartis Biomedical Research, Oncology) S Stephane Ferretti (Novartis Biomedical Research, Oncology) C Carlotta Costa (Novartis Biomedical Research, Oncology)

Abstract

Non–small cell lung cancer (NSCLC) patients with tumors harboring STK11 mutations are resistant to standard of care anti-PD-1/PD-L1 blockade. For this patient population there are no currently available tailored treatments, underlying the critical need to discover effective therapeutic strategies. In this study, we dissected the molecular mechanisms responsible for STK11 -mediated resistance to immune checkpoint blockade (ICB) and identified CRTC2, a coactivator of the transcription factor cAMP response element-binding protein (CREB), as a key signaling node regulating Stk11 -dependent cell-extrinsic functions. CRTC2 deletion remodeled the immune profiles of Stk11 -KO tumors and resensitized them to anti-PD-1 treatment, comparably to Stk11 -proficient tumors. Mechanistically, the abrogation of the binding between CRTC2 and CREB was sufficient to restore sensitivity to immunotherapy. These findings provide critical insights into the central role of CRTC2 in modulating response to ICB and identify the disruption of CRTC2–CREB interaction as a potential therapeutic approach for this patient population.

Article Details

Volume / Issue Vol. 123, Issue 17
Published April 28, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (21)

D

Dimitri Robay

Novartis Biomedical Research, Oncology

O

Ole Ackermann

Novartis Biomedical Research, Oncology

L

Laurent Laborde

Novartis Biomedical Research, Oncology

X

Xingyi Shi

Novartis Biomedical Research, Oncology

F

Federico Oreglia

Novartis Biomedical Research, Oncology

R

Ramona Stump

Novartis Biomedical Research, Oncology

S

Sabina Ciaghi

Novartis Biomedical Research, Oncology

G

Giorgio G. Galli

L

Laura Holzer

Novartis Biomedical Research, Oncology

L

Lorraine Villemin

Novartis Biomedical Research, Oncology

J

Joel Wagner

Novartis Biomedical Research, Oncology

J

Jincheng Wu

Novartis Biomedical Research, Oncology

L

Lang Ho Lee

Novartis Biomedical Research, Oncology

C

Claudia Bossen

Novartis Pharma

T

Thanos P. Mourikis

M

Millicent Gabriel

Novartis Biomedical Research, Oncology

D

David Ruddy

Novartis Biomedical Research, Oncology

H

Haiyan Yu

State Key Laboratory of Tropical Oceanography, South China Sea Institute of Oceanology, Guangdong Provincial Key Laboratory of Applied Marine Biology, Chinese Academy of Sciences

C

Cory Johannessen

Novartis Biomedical Research, Oncology

S

Stephane Ferretti

Novartis Biomedical Research, Oncology

C

Carlotta Costa

Novartis Biomedical Research, Oncology