4.7 Article

Cell type-restricted activity of hnRNPM promotes breast cancer metastasis via regulating alternative splicing

期刊

GENES & DEVELOPMENT
卷 28, 期 11, 页码 1191-1203

出版社

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1101/gad.241968.114

关键词

hnRNPM; breast cancer metastasis; alternative splicing; CD44; EMT; TGF beta; ESRP1

资金

  1. American Cancer Society [RSG-09-181, RSG-09-252]
  2. US National Institutes of Health [R01HG006264, U01HG007013, R01GM110146, R01CA182467]
  3. H Foundation
  4. A Sister's Hope Foundation
  5. Lynn Sage Breast Cancer Research Foundation and Scholar Award

向作者/读者索取更多资源

Tumor metastasis remains the major cause of cancer-related death, but its molecular basis is still not well understood. Here we uncovered a splicing-mediated pathway that is essential for breast cancer metastasis. We show that the RNA-binding protein heterogeneous nuclear ribonucleoprotein M (hnRNPM) promotes breast cancer metastasis by activating the switch of alternative splicing that occurs during epithelial mesenchymal transition (EMT). Genome-wide deep sequencing analysis suggests that hnRNPM potentiates TGF beta signaling and identifies CD44 as a key downstream target of hnRNPM. hnRNPM ablation prevents TGF beta-induced EMT and inhibits breast cancer metastasis in mice, whereas enforced expression of the specific CD44 standard (CD44s) splice isoform overrides the loss of hnRNPM and permits EMT and metastasis. Mechanistically, we demonstrate that the ubiquitously expressed hnRNPM acts in a mesenchymal-specific manner to precisely control CD44 splice isoform switching during EMT. This restricted cell-type activity of hnRNPM is achieved by competition with ESRP1, an epithelial splicing regulator that binds to the same cis-regulatory RNA elements as hnRNPM and is repressed during EMT. Importantly, hnRNPM is associated with aggressive breast cancer and correlates with increased CD44s in patient specimens. These findings demonstrate a novel molecular mechanism through which tumor metastasis is endowed by the hnRNPM-mediated splicing program.

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