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REGγ ablation impedes dedifferentiation of anaplastic thyroid carcinoma and accentuates radio-therapeutic response by regulating the Smad7-TGF-β pathway

  • Chan Jiao
  • , Lin Li
  • , Pei Zhang
  • , Li Zhang
  • , Ke Li
  • , Riqun Fang
  • , Lei Yuan
  • , Kaixuan Shi
  • , Linan Pan
  • , Qiannan Guo
  • , Xiao Gao
  • , Geng Chen
  • , Shichen Xu
  • , Qingwei Wang
  • , Di Zuo
  • , Wei Wu
  • , Shanlou Qiao
  • , Xiaoshuang Wang
  • , Robb Moses
  • , Jianru Xiao
  • Lei Li*, Yongyan Dang, Xiaotao Li
*Corresponding author for this work
  • East China Normal University
  • Changzheng Hospital
  • The Second Chengdu Municipal Hospital
  • Ministry of Health of People's Republic of China
  • Chubu University
  • Baylor College of Medicine

Research output: Contribution to journalArticlepeer-review

Abstract

Anaplastic thyroid cancer (ATC) is the most aggressive human thyroid malignancy, characterized by dedifferentiation and resistance to radioiodine therapy. The underlying mechanisms regulating ATC dedifferentiation are largely unknown. Here, we show that REGγ, a noncanonical proteasome activator highly expressed in ATC, is an important regulator of differentiation in ATC cells. Ablation of REGγ significantly restored expression of thyroid-specific genes, enhanced iodine uptake, and improved the efficacy of 131I therapy in ATC xenograft models. Mechanistically, REGγ directly binds to the TGF-β signaling antagonist Smad7 and promotes its degradation, leading to the activation of the TGF-β signal pathway. With gain- and loss-of-function studies, we demonstrate that Smad7 is an important mediator for the REGγ function in ATC cell dedifferentiation, which is supported by expression profiles in human ATC tissues. It seems that REGγ impinges on repression of thyroid-specific genes and promotion of tumor malignancy in ATC cells by activating the TGF-β signal pathway via degradation of Smad7. Thus, REGγ may serve as a novel therapeutic target for allowing radioiodine therapy in anaplastic thyroid cancer patients with poor prognosis.

Original languageEnglish
Pages (from-to)497-508
Number of pages12
JournalCell Death and Differentiation
Volume27
Issue number2
DOIs
StatePublished - 1 Feb 2020

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

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