Common inherited loss-of-function mutations in the innate sensor NOD2 contribute to exceptional immune response to cancer immunotherapy

M Megan B. Barnet (Garvan Institute of Medical Research) K Katherine J. L. Jackson (Garvan Institute of Medical Research) E Etienne Masle-Farquhar (Garvan Institute of Medical Research) A Amanda Russell (Garvan Institute of Medical Research) D Deborah L. Burnett (Garvan Institute of Medical Research) A Adrian Chye (Immunology Division, Garvan Institute of Medical Research) C Chris J. Jara (Immunology Division, Garvan Institute of Medical Research) M Megan Faulks (Garvan Institute of Medical Research) A Amanda Mawson (Immunology Division, Garvan Institute of Medical Research) T Timothy J. Peters (Garvan Institute of Medical Research) R Robert Brink (Garvan Institute of Medical Research) K Katherine Wright (Department of Medical Oncology, The Kinghorn Cancer Centre, St Vincent’s Hospital Sydney) I India Allen (Immunology Division, Garvan Institute of Medical Research) S Simon Junankar (Immunology Division, Garvan Institute of Medical Research) I Ian D. Davis (School of Medicine, Monash University) G Gillian Heller (National Health and Medical Research Council Clinical Trials Centre, University of Sydney) Z Zia Khan (Genentech) J Jeffrey Bruce (Princess Margaret Cancer Centre) C Cindy Yang (Princess Margaret Cancer Centre) S Stephenie Prokopec (Princess Margaret Cancer Centre) T Trevor Pugh (Princess Margaret Cancer Centre) A Andreas Behren (Olivia Newton-John Cancer Research Institute) G Georgina L. Hold (UNSW Microbiome Research Centre, University of New South Wales Sydney) F Fan Zhang W Wendy A. Cooper (School of Medicine, Western Sydney University) B Bo Gao (College of Energy, Institute of Functional Nano and Soft Materials (FUNSOM), Jiangsu Key Laboratory of Advanced Negative Carbon Technologies, Soochow University, Suzhou, China.) A Adnan Nagrial (Sydney Medical School, University of Sydney) A Anthony M. Joshua (Immunology Division, Garvan Institute of Medical Research) T Thomas John (Experimental Physics) G Geoffrey Peters (Canberra Region Cancer Centre) R Rina Hui (School of Clinical Medicine, Hong Kong University Health System) M Michael Boyer (Sydney Medical School, University of Sydney) P Prunella L. Blinman (Sydney Medical School, University of Sydney) S Steven C. Kao (Sydney Medical School, University of Sydney) J Jonathan Cebon (Olivia Newton-John Cancer Research Institute) C Christopher C. Goodnow (Garvan Institute of Medical Research)

Abstract

Lung cancers and melanomas have many somatically mutated self-proteins that would be expected to trigger an immune rejection response, yet therapeutic responses can only be induced in a subset of patients. Here, we investigated the possibility that inherited differences in immune tolerance checkpoints contribute to variability in outcomes. Whole genome sequencing revealed biallelic germline loss-of-function (LOF) mutations in the immune tolerance checkpoint gene, NOD2 , in an exceptional immune responder to targeted radiotherapy for metastatic melanoma. In 40 exceptional immune responders to anti-PD1 monotherapy for non–small cell lung cancer (NSCLC), genome sequencing showed 30% had inherited a NOD2 LOF variant, more than twice the population frequency ( P = 0.0021). Conversely, a gain-of-function RIPK2 allele known to increase NOD2 signaling was inherited by 61% of nonresponders from the same cohort, compared to 10% of exceptional responders and much higher than the population frequency ( P < 0.0001). Within the overall recruited cohort of 144 NSCLC anti-PD1 patients, individuals with immune-related adverse events (irAE) had better overall survival, further improved in those with NOD2 LOF. In independent anti-PD1 monotherapy cohorts with a range of cancers, inherited NOD2 LOF was associated with complete or partial response ( P = 0.0107). Experimental validation in mice showed germline Nod2 LOF enhanced therapeutic immune responses elicited by anti-PD1 monotherapy against a high mutation burden colorectal cancer, increasing tumor infiltration by effector memory CD8 T cells. Collectively these results reveal common inherited human variation in an immune tolerance checkpoint is a determinant of cancer immune responses elicited by pharmacological inhibition of another checkpoint.

Article Details

Volume / Issue Vol. 122, Issue 28
Published July 15, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (36)

M

Megan B. Barnet

Garvan Institute of Medical Research

K

Katherine J. L. Jackson

Garvan Institute of Medical Research

E

Etienne Masle-Farquhar

Garvan Institute of Medical Research

A

Amanda Russell

Garvan Institute of Medical Research

D

Deborah L. Burnett

Garvan Institute of Medical Research

A

Adrian Chye

Immunology Division, Garvan Institute of Medical Research

C

Chris J. Jara

Immunology Division, Garvan Institute of Medical Research

M

Megan Faulks

Garvan Institute of Medical Research

A

Amanda Mawson

Immunology Division, Garvan Institute of Medical Research

T

Timothy J. Peters

Garvan Institute of Medical Research

R

Robert Brink

Garvan Institute of Medical Research

K

Katherine Wright

Department of Medical Oncology, The Kinghorn Cancer Centre, St Vincent’s Hospital Sydney

I

India Allen

Immunology Division, Garvan Institute of Medical Research

S

Simon Junankar

Immunology Division, Garvan Institute of Medical Research

I

Ian D. Davis

School of Medicine, Monash University

G

Gillian Heller

National Health and Medical Research Council Clinical Trials Centre, University of Sydney

Z

Zia Khan

Genentech

J

Jeffrey Bruce

Princess Margaret Cancer Centre

C

Cindy Yang

Princess Margaret Cancer Centre

S

Stephenie Prokopec

Princess Margaret Cancer Centre

T

Trevor Pugh

Princess Margaret Cancer Centre

A

Andreas Behren

Olivia Newton-John Cancer Research Institute

G

Georgina L. Hold

UNSW Microbiome Research Centre, University of New South Wales Sydney

F

Fan Zhang

W

Wendy A. Cooper

School of Medicine, Western Sydney University

B

Bo Gao

College of Energy, Institute of Functional Nano and Soft Materials (FUNSOM), Jiangsu Key Laboratory of Advanced Negative Carbon Technologies, Soochow University, Suzhou, China.

A

Adnan Nagrial

Sydney Medical School, University of Sydney

A

Anthony M. Joshua

Immunology Division, Garvan Institute of Medical Research

T

Thomas John

Experimental Physics

G

Geoffrey Peters

Canberra Region Cancer Centre

R

Rina Hui

School of Clinical Medicine, Hong Kong University Health System

M

Michael Boyer

Sydney Medical School, University of Sydney

P

Prunella L. Blinman

Sydney Medical School, University of Sydney

S

Steven C. Kao

Sydney Medical School, University of Sydney

J

Jonathan Cebon

Olivia Newton-John Cancer Research Institute

C

Christopher C. Goodnow

Garvan Institute of Medical Research