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Co-inhibition of SMAD and MAPK signaling enhances (124)I uptake in BRAF-mutant thyroid cancers

Constitutive MAPK activation silences genes required for iodide uptake and thyroid hormone biosynthesis in thyroid follicular cells. Accordingly, most BRAF(V600E) papillary thyroid cancers (PTC) are refractory to radioiodide (RAI) therapy. MAPK pathway inhibitors rescue thyroid-differentiated proper...

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Autores principales: Luckett, Kathleen A, Cracchiolo, Jennifer R, Krishnamoorthy, Gnana P, Leandro-Garcia, Luis Javier, Nagarajah, James, Saqcena, Mahesh, Lester, Rona, Im, Soo Y, Zhao, Zhen, Lowe, Scott W, de Stanchina, Elisa, Sherman, Eric J, Ho, Alan L, Leach, Steven D, Knauf, Jeffrey A, Fagin, James A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Bioscientifica Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8183640/
https://www.ncbi.nlm.nih.gov/pubmed/33890869
http://dx.doi.org/10.1530/ERC-21-0017
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author Luckett, Kathleen A
Cracchiolo, Jennifer R
Krishnamoorthy, Gnana P
Leandro-Garcia, Luis Javier
Nagarajah, James
Saqcena, Mahesh
Lester, Rona
Im, Soo Y
Zhao, Zhen
Lowe, Scott W
de Stanchina, Elisa
Sherman, Eric J
Ho, Alan L
Leach, Steven D
Knauf, Jeffrey A
Fagin, James A
author_facet Luckett, Kathleen A
Cracchiolo, Jennifer R
Krishnamoorthy, Gnana P
Leandro-Garcia, Luis Javier
Nagarajah, James
Saqcena, Mahesh
Lester, Rona
Im, Soo Y
Zhao, Zhen
Lowe, Scott W
de Stanchina, Elisa
Sherman, Eric J
Ho, Alan L
Leach, Steven D
Knauf, Jeffrey A
Fagin, James A
author_sort Luckett, Kathleen A
collection PubMed
description Constitutive MAPK activation silences genes required for iodide uptake and thyroid hormone biosynthesis in thyroid follicular cells. Accordingly, most BRAF(V600E) papillary thyroid cancers (PTC) are refractory to radioiodide (RAI) therapy. MAPK pathway inhibitors rescue thyroid-differentiated properties and RAI responsiveness in mice and patient subsets with BRAF(V600E)-mutant PTC. TGFB1 also impairs thyroid differentiation and has been proposed to mediate the effects of mutant BRAF. We generated a mouse model of BRAF(V600E)-PTC with thyroid-specific knockout of the Tgfbr1 gene to investigate the role of TGFB1 on thyroid-differentiated gene expression and RAI uptake in vivo. Despite appropriate loss of Tgfbr1, pSMAD levels remained high, indicating that ligands other than TGFB1 were engaging in this pathway. The activin ligand subunits Inhba and Inhbb were found to be overexpressed in BRAF(V600E)-mutant thyroid cancers. Treatment with follistatin, a potent inhibitor of activin, or vactosertib, which inhibits both TGFBR1 and the activin type I receptor ALK4, induced a profound inhibition of pSMAD in BRAF(V600E)-PTCs. Blocking SMAD signaling alone was insufficient to enhance iodide uptake in the setting of constitutive MAPK activation. However, combination treatment with either follistatin or vactosertib and the MEK inhibitor CKI increased (124)I uptake compared to CKI alone. In summary, activin family ligands converge to induce pSMAD in Braf-mutant PTCs. Dedifferentiation of BRAF(V600E)-PTCs cannot be ascribed primarily to activation of SMAD. However, targeting TGFβ/activin-induced pSMAD augmented MAPK inhibitor effects on iodine incorporation into BRAF tumor cells, indicating that these two pathways exert interdependent effects on the differentiation state of thyroid cancer cells.
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spelling pubmed-81836402021-06-10 Co-inhibition of SMAD and MAPK signaling enhances (124)I uptake in BRAF-mutant thyroid cancers Luckett, Kathleen A Cracchiolo, Jennifer R Krishnamoorthy, Gnana P Leandro-Garcia, Luis Javier Nagarajah, James Saqcena, Mahesh Lester, Rona Im, Soo Y Zhao, Zhen Lowe, Scott W de Stanchina, Elisa Sherman, Eric J Ho, Alan L Leach, Steven D Knauf, Jeffrey A Fagin, James A Endocr Relat Cancer Research Constitutive MAPK activation silences genes required for iodide uptake and thyroid hormone biosynthesis in thyroid follicular cells. Accordingly, most BRAF(V600E) papillary thyroid cancers (PTC) are refractory to radioiodide (RAI) therapy. MAPK pathway inhibitors rescue thyroid-differentiated properties and RAI responsiveness in mice and patient subsets with BRAF(V600E)-mutant PTC. TGFB1 also impairs thyroid differentiation and has been proposed to mediate the effects of mutant BRAF. We generated a mouse model of BRAF(V600E)-PTC with thyroid-specific knockout of the Tgfbr1 gene to investigate the role of TGFB1 on thyroid-differentiated gene expression and RAI uptake in vivo. Despite appropriate loss of Tgfbr1, pSMAD levels remained high, indicating that ligands other than TGFB1 were engaging in this pathway. The activin ligand subunits Inhba and Inhbb were found to be overexpressed in BRAF(V600E)-mutant thyroid cancers. Treatment with follistatin, a potent inhibitor of activin, or vactosertib, which inhibits both TGFBR1 and the activin type I receptor ALK4, induced a profound inhibition of pSMAD in BRAF(V600E)-PTCs. Blocking SMAD signaling alone was insufficient to enhance iodide uptake in the setting of constitutive MAPK activation. However, combination treatment with either follistatin or vactosertib and the MEK inhibitor CKI increased (124)I uptake compared to CKI alone. In summary, activin family ligands converge to induce pSMAD in Braf-mutant PTCs. Dedifferentiation of BRAF(V600E)-PTCs cannot be ascribed primarily to activation of SMAD. However, targeting TGFβ/activin-induced pSMAD augmented MAPK inhibitor effects on iodine incorporation into BRAF tumor cells, indicating that these two pathways exert interdependent effects on the differentiation state of thyroid cancer cells. Bioscientifica Ltd 2021-04-23 /pmc/articles/PMC8183640/ /pubmed/33890869 http://dx.doi.org/10.1530/ERC-21-0017 Text en © The authors https://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research
Luckett, Kathleen A
Cracchiolo, Jennifer R
Krishnamoorthy, Gnana P
Leandro-Garcia, Luis Javier
Nagarajah, James
Saqcena, Mahesh
Lester, Rona
Im, Soo Y
Zhao, Zhen
Lowe, Scott W
de Stanchina, Elisa
Sherman, Eric J
Ho, Alan L
Leach, Steven D
Knauf, Jeffrey A
Fagin, James A
Co-inhibition of SMAD and MAPK signaling enhances (124)I uptake in BRAF-mutant thyroid cancers
title Co-inhibition of SMAD and MAPK signaling enhances (124)I uptake in BRAF-mutant thyroid cancers
title_full Co-inhibition of SMAD and MAPK signaling enhances (124)I uptake in BRAF-mutant thyroid cancers
title_fullStr Co-inhibition of SMAD and MAPK signaling enhances (124)I uptake in BRAF-mutant thyroid cancers
title_full_unstemmed Co-inhibition of SMAD and MAPK signaling enhances (124)I uptake in BRAF-mutant thyroid cancers
title_short Co-inhibition of SMAD and MAPK signaling enhances (124)I uptake in BRAF-mutant thyroid cancers
title_sort co-inhibition of smad and mapk signaling enhances (124)i uptake in braf-mutant thyroid cancers
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8183640/
https://www.ncbi.nlm.nih.gov/pubmed/33890869
http://dx.doi.org/10.1530/ERC-21-0017
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