STAT6 blockade ameliorates thyroid function in Graves' disease via downregulation of the Sodium/Iodide Symporter

Author:

Yang Qian1,zhang Qinnan1,Pan Fanfan Pan1,Zha Bingbing1

Affiliation:

1. Department of Endocrinology, Fifth People's Hospital of Shanghai Fudan University

Abstract

Abstract Background Signal Transducer and Activator of Transcription 6 (STAT6) is an important nuclear transcription factor. Previous study demonstrated that blockading STAT6 can ameliorate thyroid function by reducing serum T3 and T4. Sodium/iodide symporter (NIS) is a key protein that mediates active iodine uptake and plays an important role in regulating thyroid function. This study explored the interaction between STAT6 and NIS.Methods Immunohistochemical staining was performed for detecting the expression of NIS in different tissues. Reverse transcription-polymerase chain reaction (RT-PCR) was performed for evaluating the mRNA level of NIS when Nthy-ori 3-1cells were incubated with IL4, TSH (Thyroid stimulating hormone) or monoclonal TSAb (thyroid-specific stimulatory autoantibody) for 24h. Quantitative RT-PCR,Western blot and immunofluorescence analysis were performed for detecting NIS expression after inhibiting STAT6 phosphorylation by AS1517499. Finally, we used Luciferase reporter assays to explore the ability of STAT6 to regulate the promoter activity of the NIS-coding gene.Results NIS was highly expressed in thyroid epithelial cells of EAGD mice or Graves' disease(GD) patients and TSAb increased the expression of NIS. We show that STAT6 phosphorylation inhibitor can attenuate the effect of TSAb on increasing NIS protein and mRNA levels. Finally, we confirm that transcription factor STAT6 can mediate NIS transcription and co-activator P100 protein can enhance STAT6-dependent transcriptional activation.Conclusion In Graves' disease, TSAb induces STAT6 signaling to upregulate NIS expression and STAT6 blockade ameliorates thyroid function via downregulation of the Sodium/Iodide Symporter. Our study furthers understanding of the effects of STAT6 on thyroid function and reveals new avenues for GD treatment.

Publisher

Research Square Platform LLC

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