A germline SNP in BRMS1 predisposes patients with lung adenocarcinoma to metastasis and can be ameliorated by targeting c-fos

Author:

Liu Yuan12ORCID,Chudgar Neel1,Mastrogiacomo Brooke13ORCID,He Di1,Lankadasari Manendra B.1,Bapat Samhita1,Jones Gregory D.1ORCID,Sanchez-Vega Francisco3ORCID,Tan Kay See4ORCID,Schultz Nikolaus3ORCID,Mukherjee Semanti5ORCID,Offit Kenneth5ORCID,Bao Yongde6,Bott Matthew J.13ORCID,Rekhtman Natasha27,Adusumilli Prasad S.12ORCID,Li Bob T.25ORCID,Mayo Marty W.8ORCID,Jones David R.12ORCID

Affiliation:

1. Thoracic Service, Department of Surgery, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.

2. Druckenmiller Center for Lung Cancer Research, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.

3. Center for Molecular Oncology, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.

4. Department of Epidemiology and Biostatistics, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.

5. Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.

6. Department of Microbiology, University of Virginia, Charlottesville, VA 22908, USA.

7. Department of Pathology, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.

8. Department of Biochemistry and Molecular Genetics, University of Virginia, Charlottesville, VA 22908, USA.

Abstract

About 50% of patients with early-stage, surgically resected lung cancer will develop distant metastasis. There remains an unmet need to identify patients likely to develop recurrence and to design innovative therapies to decrease this risk. Two primary isoforms of BRMS1, v1 and v2, are present in humans. Using next-generation sequencing of BRMS1 on matched human noncancerous lung tissue and non–small cell lung cancer (NSCLC) specimens, we identified single-nucleotide polymorphism (SNP) rs1052566 that results in an A273V mutation of BRMS1v2. This SNP is homozygous ( BRMS1v2 A273V/A273V ) in 8% of the population and correlates with aggressive biology in lung adenocarcinoma (LUAD). Mechanistically, we show that BRMS1v2 A273V abolishes the metastasis suppressor function of BRMS1v2 and promotes robust cell invasion and metastases by activation of c-fos–mediated gene-specific transcriptional regulation. BRMS1v2 A273V increases cell invasion in vitro and increases metastases in both tail-vein injection xenografts and LUAD patient-derived organoid (PDO) intracardiac injection metastasis in vivo models. Moreover, we show that BRMS1v2 A273V fails to interact with nuclear Src, thereby activating intratumoral c-fos in vitro. Higher c-fos results in up-regulation of CEACAM6 , which drives metastases in vitro and in vivo. Using both xenograft and PDO metastasis models, we repurposed T5224 for treatment, a c-fos pharmacologic inhibitor investigated in clinical trials for arthritis, and observed suppression of metastases in BRMS1v2 A273V/A273V LUAD in mice. Collectively, we elucidate the mechanism of BRMS1v2 A273V/A273V -induced metastases and offer a putative therapeutic strategy for patients with LUAD who have this germline alteration.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

General Medicine

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