Extracellular signal-regulated kinase mediates chromatin rewiring and lineage transformation in lung cancer

Author:

Inoue Yusuke1ORCID,Nikolic Ana2,Farnsworth Dylan1ORCID,Shi Rocky1,Johnson Fraser D1,Liu Alvin1,Ladanyi Marc3,Somwar Romel3,Gallo Marco2,Lockwood William W14ORCID

Affiliation:

1. Department of Integrative Oncology, BC Cancer Agency, Columbia, Canada

2. Department of Biochemistry and Molecular Biology, Arnie Charbonneau Cancer Institute, Alberta Children’s Hospital Research Institute, Cumming School of Medicine, University of Calgary, Calgary, Canada

3. Human Oncology and Pathogenesis Program, Memorial Sloan Kettering Cancer Center, New York, United States

4. Department of Pathology & Laboratory Medicine, University of British Columbia, Columbia, Canada

Abstract

Lineage transformation between lung cancer subtypes is a poorly understood phenomenon associated with resistance to treatment and poor patient outcomes. Here, we aimed to model this transition to define underlying biological mechanisms and identify potential avenues for therapeutic intervention. Small cell lung cancer (SCLC) is neuroendocrine in identity and, in contrast to non-SCLC (NSCLC), rarely contains mutations that drive the MAPK pathway. Likewise, NSCLCs that transform to SCLC concomitantly with development of therapy resistance downregulate MAPK signaling, suggesting an inverse relationship between pathway activation and lineage state. To test this, we activated MAPK in SCLC through conditional expression of mutant KRAS or EGFR, which revealed suppression of the neuroendocrine differentiation program via ERK. We found that ERK induces the expression of ETS factors that mediate transformation into a NSCLC-like state. ATAC-seq demonstrated ERK-driven changes in chromatin accessibility at putative regulatory regions and global chromatin rewiring at neuroendocrine and ETS transcriptional targets. Further, ERK-mediated induction of ETS factors as well as suppression of neuroendocrine differentiation were dependent on histone acetyltransferase activities of CBP/p300. Overall, we describe how the ERK-CBP/p300-ETS axis promotes a lineage shift between neuroendocrine and non-neuroendocrine lung cancer phenotypes and provide rationale for the disruption of this program during transformation-driven resistance to targeted therapy.

Funder

Canadian Institutes of Health Research

British Columbia Lung Association

Terry Fox Research Institute

Canada Research Chairs

Alberta Health Services

Alberta Innovates

Japanese Respiratory Society

Michael Smith Foundation for Health Research

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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