An alternative splicing switch in FLNB promotes the mesenchymal cell state in human breast cancer

Author:

Li Ji123ORCID,Choi Peter S123ORCID,Chaffer Christine L45,Labella Katherine12,Hwang Justin H123,Giacomelli Andrew O123ORCID,Kim Jong Wook123,Ilic Nina123,Doench John G3,Ly Seav Huong123,Dai Chao123,Hagel Kimberly12,Hong Andrew L123ORCID,Gjoerup Ole123,Goel Shom26,Ge Jennifer Y127,Root David E3,Zhao Jean J26,Brooks Angela N8,Weinberg Robert A4,Hahn William C123ORCID

Affiliation:

1. Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, United States

2. Harvard Medical School, Boston, United States

3. Broad Institute of MIT and Harvard, Cambridge, United States

4. Whitehead Institute for Biomedical Research and MIT, Cambridge, United States

5. Garvan Institute of Medical Research, Sydney, Australia

6. Department of Cancer Biology, Dana-Farber Cancer Institute, Boston, United States

7. Department of Biostatistics and Computational Biology, Dana-Farber Cancer Institute, Boston, United States

8. University of California, Santa Cruz, Santa Cruz, United States

Abstract

Alternative splicing of mRNA precursors represents a key gene expression regulatory step and permits the generation of distinct protein products with diverse functions. In a genome-scale expression screen for inducers of the epithelial-to-mesenchymal transition (EMT), we found a striking enrichment of RNA-binding proteins. We validated that QKI and RBFOX1 were necessary and sufficient to induce an intermediate mesenchymal cell state and increased tumorigenicity. Using RNA-seq and eCLIP analysis, we found that QKI and RBFOX1 coordinately regulated the splicing and function of the actin-binding protein FLNB, which plays a causal role in the regulation of EMT. Specifically, the skipping of FLNB exon 30 induced EMT by releasing the FOXC1 transcription factor. Moreover, skipping of FLNB exon 30 is strongly associated with EMT gene signatures in basal-like breast cancer patient samples. These observations identify a specific dysregulation of splicing, which regulates tumor cell plasticity and is frequently observed in human cancer.

Funder

Susan G. Komen

Terri Brodeur Breast Cancer Foundation

National Cancer Institute

Publisher

eLife Sciences Publications, Ltd

Subject

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

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