4.8 Article

TGFβ-Activated USP27X Deubiquitinase Regulates Cell Migration and Chemoresistance via Stabilization of Snail1

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CANCER RESEARCH
卷 79, 期 1, 页码 33-46

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AMER ASSOC CANCER RESEARCH
DOI: 10.1158/0008-5472.CAN-18-0753

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  1. Fondo Europeo de Desarrollo Regional-FEDER [SAF2013-48849-C2-1-R, SAF2016-76461-R, SAF2013-48849-C2-2-R]
  2. Fundacion Cientifica de la Asociacion Espanola contra el Cancer
  3. Instituto de Salud Carlos III [PI16/00253, PIE15/00008]
  4. Rosswell Park Cancer Institute
  5. NCI [P30CA016056]
  6. Breast Cancer Research Foundation [BCRF-17-008]
  7. Ministerio de Economia y Competitividad (MINECO)

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In cancer cells, epithelial-to-mesenchymal transition (EMT) is controlled by Snail1, a transcriptional factor also required for the activation of cancer-associated fibroblasts (CAF). Snail1 is short-lived in normal epithelial cells as a consequence of its coordinated and continuous ubiquitination by several F-box-specific E3 ligases, but its degradation is prevented in cancer cells and in activated fibroblasts. Here, we performed an siRNA screen and identified USP27X as a deubiquitinase that increases Snail1 stability. Expression of USP27X in breast and pancreatic cancer cell lines and tumors positively correlated with Snail1 expression levels. Accordingly, downregulation of USP27X decreased Snail1 protein in several tumor cell lines. USP27X depletion impaired Snail1-dependent cell migration and invasion and metastasis formation and increased cellular sensitivity to cisplatin. USP27X was upregulated by TGF beta during EMT and was required for TGF beta-induced expression of Snail1 and other mesenchymal markers in epithelial cells and CAF. In agreement with this, depletion of USP27X prevented TGF beta-induced EMT and fibroblast activation. Collectively, these results indicate that USP27X is an essential protein controlling Snail1 expression and function and may serve as a target for inhibition of Snail1-dependent tumoral invasion and chemoresistance. Significance: These findings show that inhibition of USP27X destabilizes Snail1 to impair EMT and renders tumor cells sensitive to chemotherapy, thus opening new strategies for the inhibition of Snail1 expression and its protumoral actions.

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