Downregulation of cellular retinoic acid binding protein 1 fosters epithelial–mesenchymal transition in thyroid cancer

Author:

Hsu Yi‐Chiung1,Huang Wen‐Chien2,Kuo Chi‐Yu2,Li Ying‐Syuan3,Cheng Shih‐Ping2345ORCID

Affiliation:

1. Department of Biomedical Sciences and Engineering National Central University Taoyuan City Taiwan

2. Department of Surgery MacKay Memorial Hospital and MacKay Medical College Taipei Taiwan

3. Department of Medical Research MacKay Memorial Hospital Taipei Taiwan

4. Institute of Biomedical Sciences MacKay Medical College New Taipei City Taiwan

5. Department of Pharmacology, School of Medicine, College of Medicine Taipei Medical University Taipei Taiwan

Abstract

AbstractCellular retinoic acid binding protein 1 (CRABP1) participates in the regulation of retinoid signaling. Previous studies showed conflicting results regarding the role of CRABP1 in tumor biology, including protumorigenic and tumor‐suppressive effects in different types of cancer. Our bioinformatics analyses suggested that CRABP1 expression was downregulated in thyroid cancer. Ectopic expression of CRABP1 in thyroid cancer cells suppressed migratory and invasive activity without affecting cell growth or cell cycle distribution. In transformed normal thyroid follicular epithelial cells, silencing of CRABP1 expression increased invasiveness. Additionally, CRABP1 overexpression was associated with downregulation of the mesenchymal phenotype. Kinase phosphorylation profiling indicated that CRABP1 overexpression was accompanied by a decrease in phosphorylation of epidermal growth factor (EGF) receptor and downstream phosphorylation of Akt, STAT3, and FAK, which were reversed by exogenous EGF treatment. Immunohistochemical analysis of our tissue microarrays revealed an inverse association between CRABP1 expression and disease stage of differentiated thyroid cancer. Taken together, our results suggest that CRABP1 expression is aberrantly lost in thyroid cancer, and this downregulation promotes the epithelial–mesenchymal transition at least partly through modulating EGF receptor signaling.

Publisher

Wiley

Subject

Cancer Research,Molecular Biology

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