Precision targeting of β-catenin induces tumor reprogramming and immunity in hepatocellular cancers

B Brandon M. Lehrich E Evan R. Delgado T Tyler M. Yasaka S Silvia Liu C Catherine Cao Y Yuqing Liu (State Key Laboratory of Electronic Thin Films and Integrated Devices) M Mohammad N. Taheri X Xiangnan Guan (Biomedical Engineering Department, Oregon Health & Science University) H Hartmut Koeppen S Sucha Singh V Vik Meadows J Jia-Jun Liu A Anya Singh-Varma Y Yekaterina Krutsenko M Minakshi Poddar T T. Kevin Hitchens L Lesley M. Foley B Binyong Liang A Alex Rialdi R Ravi P. Rai P Panari Patel M Madeline Riley A Aaron Bell R Reben Raeman T Tulin Dadali J Jason J. Luke E Ernesto Guccione M Mo R. Ebrahimkhani A Amaia Lujambio (Marc and Jennifer Lipschultz Precision Immunology Institute, Icahn School of Medicine at Mount Sinai, New York, NY, USA.) X Xin Chen M Martin Maier Y Yulei Wang W Wendy Broom J Junyan Tao S Satdarshan P. Monga

Abstract

Abstract First-line immune checkpoint inhibitor (ICI) combinations show responses in subsets of hepatocellular carcinoma (HCC) patients. Nearly half of HCCs are Wnt-active with mutations in CTNNB1 (encoding for β-catenin), AXIN1/2 , or APC , and demonstrate heterogeneous and limited benefit to ICI due to an immune excluded tumor microenvironment. We show significant tumor responses in multiple β-catenin-mutated immunocompetent HCC models to a novel siRNA encapsulated in lipid nanoparticle targeting CTNNB1 (LNP-CTNNB1). Both single-cell and spatial transcriptomics reveal cellular and zonal reprogramming, along with activation of immune regulatory transcription factors IRF2 and POU2F1, re-engaged type I/II interferon signaling, and alterations in both innate and adaptive immunity upon β-catenin suppression with LNP-CTNNB1 at early- and advanced-stage disease. Moreover, ICI enhances response to LNP-CTNNB1 in advanced-stage disease by preventing T cell exhaustion and through formation of lymphoid aggregates (LA). In fact, expression of an LA-like gene signature prognosticates survival for patients receiving atezolizumab plus bevacizumab in the IMbrave150 phase III trial and inversely correlates with CTNNB1 -mutatational status in this patient cohort. In conclusion, LNP-CTNNB1 is efficacious as monotherapy and in combination with ICI in CTNNB1 -mutated HCCs through impacting tumor cell-intrinsic signaling and remodeling global immune surveillance, providing rationale for clinical investigations.

Article Details

Volume / Issue Vol. 16, Issue 1
Published May 30, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (35)

B

Brandon M. Lehrich

E

Evan R. Delgado

T

Tyler M. Yasaka

S

Silvia Liu

C

Catherine Cao

Y

Yuqing Liu

State Key Laboratory of Electronic Thin Films and Integrated Devices

M

Mohammad N. Taheri

X

Xiangnan Guan

Biomedical Engineering Department, Oregon Health & Science University

H

Hartmut Koeppen

S

Sucha Singh

V

Vik Meadows

J

Jia-Jun Liu

A

Anya Singh-Varma

Y

Yekaterina Krutsenko

M

Minakshi Poddar

T

T. Kevin Hitchens

L

Lesley M. Foley

B

Binyong Liang

A

Alex Rialdi

R

Ravi P. Rai

P

Panari Patel

M

Madeline Riley

A

Aaron Bell

R

Reben Raeman

T

Tulin Dadali

J

Jason J. Luke

E

Ernesto Guccione

M

Mo R. Ebrahimkhani

A

Amaia Lujambio

Marc and Jennifer Lipschultz Precision Immunology Institute, Icahn School of Medicine at Mount Sinai, New York, NY, USA.

X

Xin Chen

M

Martin Maier

Y

Yulei Wang

W

Wendy Broom

J

Junyan Tao

S

Satdarshan P. Monga