4.8 Article

Extracellular Signal-Regulated Kinase 5 Regulates the Malignant Phenotype of Cholangiocarcinoma Cells

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HEPATOLOGY
卷 74, 期 4, 页码 2007-2020

出版社

LIPPINCOTT WILLIAMS & WILKINS
DOI: 10.1002/hep.31888

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资金

  1. AIRC [IG-17786, IG-21349]
  2. University of Florence
  3. Fondazione Cassa di Risparmio di Pistoia e Pescia
  4. Fondazione AIRC
  5. Spanish Carlos III Health Institute (ISCIII) [FIS PI15/01132, PI18/01075, CON14/00129, CPII19/00008]
  6. Fondo Europeo de Desarrollo Regional (FEDER), Department of Health of the Basque Country [2017111010]
  7. Euskadi RIS3 [2020333010]
  8. BIOEF (Basque Foundation for Innovation and Health Research: EiTB Maratoia) [BIO15/CA/016/BD]
  9. Department of Industry of the Basque Country [Elkartek: KK-2020/00008]
  10. Fundacion Cientifica de la Asociacion Espanola Contra el Cancer (AECC Scientific Foundation)
  11. EU COST-Action [18122]
  12. European Union's Horizon 2020 research and innovation program under the Marie Sklodowska-Curie grant [801481]

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This study revealed the important role of ERK5 in the growth and migration of CCA cells, as well as its involvement in the protumorigenic crosstalk between the tumor and the microenvironment.
Background and Aims Cholangiocarcinoma (CCA) is characterized by high resistance to chemotherapy and poor prognosis. Several oncogenic pathways converge on activation of extracellular signal-regulated kinase 5 (ERK5), whose role in CCA has not been explored. The aim of this study was to investigate the role of ERK5 in the biology of CCA. Approach and Results ERK5 expression was detected in two established (HuCCT-1 and CCLP-1) and two primary human intrahepatic CCA cell lines (iCCA58 and iCCA60). ERK5 phosphorylation was increased in CCA cells exposed to soluble mediators. In both HuCCT-1 and CCLP-1 cells, ERK5 was localized in the nucleus, and exposure to fetal bovine serum (FBS) further increased the amount of nuclear ERK5. In human CCA specimens, ERK5 mRNA expression was increased in tumor cells and positively correlated with portal invasion. ERK5 protein levels were significantly associated with tumor grade. Growth, migration, and invasion of CCA cells were decreased when ERK5 was silenced using specific short hairpin RNA (shRNA). The inhibitory effects on CCA cell proliferation, migration and invasion were recapitulated by treatment with small molecule inhibitors targeting ERK5. In addition, expression of the angiogenic factors VEGF and angiopoietin 1 was reduced after ERK5 silencing. Conditioned medium from ERK5-silenced cells had a lower ability to induce tube formation by human umbilical vein endothelial cells and to induce migration of myofibroblasts and monocytes/macrophages. In mice, subcutaneous injection of CCLP-1 cells silenced for ERK5 resulted in less frequent tumor development and smaller size of xenografts compared with cells transfected with nontargeting shRNA. Conclusions ERK5 is a key mediator of growth and migration of CCA cells and supports a protumorigenic crosstalk between the tumor and the microenvironment.

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