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Updated: Oct 4, 2025

An Ex vivo Culture System to Study Thyroid Development
Published on: June 6, 2014
Sox9 is involved in the thyroid differentiation program and is regulated by crosstalk between TSH, TGFβ and thyroid
Arístides López-Márquez1,2, Carlos Carrasco-López1, Andrea Martínez-Cano1,3
1Instituto de Investigaciones Biomédicas "Alberto Sols". Consejo Superior de Investigaciones Científicas (CSIC) y Universidad Autónoma de Madrid (UAM), CSIC-UAM., C/Arturo Duperier 4, 28029, Madrid, Spain.
Abstract:
While the signaling pathways and transcription factors involved in the differentiation of thyroid follicular cells, both in embryonic and adult life, are increasingly well understood, the underlying mechanisms and potential crosstalk between the thyroid transcription factors Nkx2.1, Foxe1 and Pax8 and inductive signals remain unclear. Here, we focused on the transcription factor Sox9, which is expressed in Nkx2.1-positive embryonic thyroid precursor cells and is maintained from embryonic development to adulthood, but its function and control are unknown. We show that two of the main signals regulating thyroid differentiation, TSH and TGFβ, modulate Sox9 expression. Specifically, TSH stimulates the cAMP/PKA pathway to transcriptionally upregulate Sox9 mRNA and protein expression, a mechanism that is mediated by the binding of CREB to a CRE site within the Sox9 promoter. Contrastingly, TGFβ signals through Smad proteins to inhibit TSH-induced Sox9 transcription. Our data also reveal that Sox9 transcription is regulated by the thyroid transcription factors, particularly Pax8. Interestingly, Sox9 significantly increased the transcriptional activation of Pax8 and Foxe1 promoters and, consequently, their expression, but had no effect on Nkx2.1. Our study establishes the involvement of Sox9 in thyroid follicular cell differentiation and broadens our understanding of transcription factor regulation of thyroid function.
Insights
Sox9 plays a key role in thyroid follicular cell differentiation. Thyroid-stimulating hormone (TSH) upregulates Sox9, while TGFβ inhibits it, revealing complex regulatory interactions.
Area of Science:
- Endocrinology
- Molecular Biology
- Developmental Biology
Background:
- Thyroid follicular cell differentiation involves known transcription factors (Nkx2.1, Foxe1, Pax8) and signals.
- Mechanisms and crosstalk between these factors and signals remain unclear.
- The role of Sox9 in thyroid development and function is unknown.
Purpose of the Study:
- Investigate the function and regulation of the transcription factor Sox9 in thyroid follicular cell differentiation.
- Elucidate the interplay between Sox9, inductive signals (TSH, TGFβ), and key thyroid transcription factors.
Main Methods:
- Analysis of Sox9 expression modulation by TSH and TGFβ.
- Investigated the role of cAMP/PKA and Smad pathways.
- Assessed the impact of Sox9 on Pax8, Foxe1, and Nkx2.1 promoter activity and expression.
Main Results:
- TSH upregulates Sox9 expression via the cAMP/PKA pathway and CREB binding.
- TGFβ inhibits TSH-induced Sox9 transcription through Smad proteins.
- Sox9 enhances the transcriptional activity of Pax8 and Foxe1, but not Nkx2.1.
Conclusions:
- Sox9 is involved in thyroid follicular cell differentiation.
- Sox9 acts as a regulator, influenced by TSH and TGFβ signaling.
- Sox9 interacts with other thyroid transcription factors, impacting their expression and contributing to thyroid function regulation.
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