Abstract

TWIST1, a transcription factor, plays a pivotal role in cancer initiation and progression. Anaplastic thyroid carcinoma (ATC) is one of the deadliest human malignancies; TWIST1 is overexpressed in ATC and increases thyroid cancer cell survival, migration and invasion. The molecular mechanisms underlying the effects of TWIST1 are partially known. Here, using miRNome profiling of papillary thyroid cancer cells (TPC-1) ectopically expressing TWIST1, we identified miR-584. We showed that TWIST1 directly binds miR-584 using chromatin immunoprecipitation. Importantly, miR-584 was up-regulated in human ATC compared to papillary thyroid carcinoma (PTC) and normal thyroid samples. Overexpression of miR-584 in TPC cells induced resistance to apoptosis, whereas stable transfection of anti-miR-584 in TPC-TWIST1 and 8505C cells increased the sensitivity to apoptosis. Using bioinformatics programs, we identified TUSC2 (tumor suppressor candidate 2) as a novel target of miR-584. TUSC2 mRNA and protein levels were decreased in TPC miR-584 and increased in TPC-TWIST1 anti-miR-584 cells. Luciferase assays demonstrated direct targeting. Restored expression of TUSC2 rescued the inhibition of apoptosis induced by miR-584. Finally, qRT-PCR and immunohistochemical analysis showed that TUSC2 was down-regulated in ATC and PTC samples compared to normal thyroids. In conclusion, our study identified a novel TWIST1/miR-584/TUSC2 pathway that plays a role in resistance to apoptosis of thyroid cancer cells.

Highlights

  • TWIST1 is a basic helix-loop-helix transcription factor essential for the development of mesoderm-derived tissues [1]

  • Using a miRNome screening analysis of papillary thyroid cancer cells (TPC-1, hereafter named TPC) ectopically expressing TWIST1 compared to control cells, we found that miR-584 was up-regulated by TWIST1, and we studied its role in thyroid cancer cells

  • We identified a set of potential miRNAs targets of Twist1 in thyroid cancer cells

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Summary

Introduction

TWIST1 is a basic helix-loop-helix transcription factor essential for the development of mesoderm-derived tissues [1]. TWIST1 promotes cancer progression [2] by inducing epithelial to mesenchymal transition (EMT) [4] and invadopodia formation [5]. TWIST1 promotes a cancer stem cell phenotype [6, 7], inhibits apoptosis [8] and increases resistance to chemotherapy [2]. Thyroid carcinoma derived from follicular cells includes different malignancies, ranging from well-differentiated to undifferentiated (or anaplastic) carcinoma [9, 10]. Anaplastic thyroid carcinoma (ATC) is among the most lethal human cancers [12,13,14,15,16,17]. TWIST1 is up-regulated in ATC and increases cell migration, invasion and resistance to apoptosis [21, 23, 24]

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