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The Thyroid Hormone Transporter Mct8 Restricts Cathepsin-Mediated Thyroglobulin Processing in Male Mice through Thyroid Auto-Regulatory Mechanisms That Encompass Autophagy

The thyroid gland is both a thyroid hormone (TH) generating as well as a TH responsive organ. It is hence crucial that cathepsin-mediated proteolytic cleavage of the precursor thyroglobulin is regulated and integrated with the subsequent export of TH into the blood circulation, which is enabled by T...

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Autores principales: Venugopalan, Vaishnavi, Al-Hashimi, Alaa, Rehders, Maren, Golchert, Janine, Reinecke, Vivien, Homuth, Georg, Völker, Uwe, Manirajah, Mythili, Touzani, Adam, Weber, Jonas, Bogyo, Matthew S., Verrey, Francois, Wirth, Eva K., Schweizer, Ulrich, Heuer, Heike, Kirstein, Janine, Brix, Klaudia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7796480/
https://www.ncbi.nlm.nih.gov/pubmed/33466458
http://dx.doi.org/10.3390/ijms22010462
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author Venugopalan, Vaishnavi
Al-Hashimi, Alaa
Rehders, Maren
Golchert, Janine
Reinecke, Vivien
Homuth, Georg
Völker, Uwe
Manirajah, Mythili
Touzani, Adam
Weber, Jonas
Bogyo, Matthew S.
Verrey, Francois
Wirth, Eva K.
Schweizer, Ulrich
Heuer, Heike
Kirstein, Janine
Brix, Klaudia
author_facet Venugopalan, Vaishnavi
Al-Hashimi, Alaa
Rehders, Maren
Golchert, Janine
Reinecke, Vivien
Homuth, Georg
Völker, Uwe
Manirajah, Mythili
Touzani, Adam
Weber, Jonas
Bogyo, Matthew S.
Verrey, Francois
Wirth, Eva K.
Schweizer, Ulrich
Heuer, Heike
Kirstein, Janine
Brix, Klaudia
author_sort Venugopalan, Vaishnavi
collection PubMed
description The thyroid gland is both a thyroid hormone (TH) generating as well as a TH responsive organ. It is hence crucial that cathepsin-mediated proteolytic cleavage of the precursor thyroglobulin is regulated and integrated with the subsequent export of TH into the blood circulation, which is enabled by TH transporters such as monocarboxylate transporters Mct8 and Mct10. Previously, we showed that cathepsin K-deficient mice exhibit the phenomenon of functional compensation through cathepsin L upregulation, which is independent of the canonical hypothalamus-pituitary-thyroid axis, thus, due to auto-regulation. Since these animals also feature enhanced Mct8 expression, we aimed to understand if TH transporters are part of the thyroid auto-regulatory mechanisms. Therefore, we analyzed phenotypic differences in thyroid function arising from combined cathepsin K and TH transporter deficiencies, i.e., in Ctsk(-/-)/Mct10(-/-), Ctsk(-/-)/Mct8(-/y), and Ctsk(-/-)/Mct8(-/y)/Mct10(-/-). Despite the impaired TH export, thyroglobulin degradation was enhanced in the mice lacking Mct8, particularly in the triple-deficient genotype, due to increased cathepsin amounts and enhanced cysteine peptidase activities, leading to ongoing thyroglobulin proteolysis for TH liberation, eventually causing self-thyrotoxic thyroid states. The increased cathepsin amounts were a consequence of autophagy-mediated lysosomal biogenesis that is possibly triggered due to the stress accompanying intrathyroidal TH accumulation, in particular in the Ctsk(-/-)/Mct8(-/y)/Mct10(-/-) animals. Collectively, our data points to the notion that the absence of cathepsin K and Mct8 leads to excessive thyroglobulin degradation and TH liberation in a non-classical pathway of thyroid auto-regulation.
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spelling pubmed-77964802021-01-10 The Thyroid Hormone Transporter Mct8 Restricts Cathepsin-Mediated Thyroglobulin Processing in Male Mice through Thyroid Auto-Regulatory Mechanisms That Encompass Autophagy Venugopalan, Vaishnavi Al-Hashimi, Alaa Rehders, Maren Golchert, Janine Reinecke, Vivien Homuth, Georg Völker, Uwe Manirajah, Mythili Touzani, Adam Weber, Jonas Bogyo, Matthew S. Verrey, Francois Wirth, Eva K. Schweizer, Ulrich Heuer, Heike Kirstein, Janine Brix, Klaudia Int J Mol Sci Article The thyroid gland is both a thyroid hormone (TH) generating as well as a TH responsive organ. It is hence crucial that cathepsin-mediated proteolytic cleavage of the precursor thyroglobulin is regulated and integrated with the subsequent export of TH into the blood circulation, which is enabled by TH transporters such as monocarboxylate transporters Mct8 and Mct10. Previously, we showed that cathepsin K-deficient mice exhibit the phenomenon of functional compensation through cathepsin L upregulation, which is independent of the canonical hypothalamus-pituitary-thyroid axis, thus, due to auto-regulation. Since these animals also feature enhanced Mct8 expression, we aimed to understand if TH transporters are part of the thyroid auto-regulatory mechanisms. Therefore, we analyzed phenotypic differences in thyroid function arising from combined cathepsin K and TH transporter deficiencies, i.e., in Ctsk(-/-)/Mct10(-/-), Ctsk(-/-)/Mct8(-/y), and Ctsk(-/-)/Mct8(-/y)/Mct10(-/-). Despite the impaired TH export, thyroglobulin degradation was enhanced in the mice lacking Mct8, particularly in the triple-deficient genotype, due to increased cathepsin amounts and enhanced cysteine peptidase activities, leading to ongoing thyroglobulin proteolysis for TH liberation, eventually causing self-thyrotoxic thyroid states. The increased cathepsin amounts were a consequence of autophagy-mediated lysosomal biogenesis that is possibly triggered due to the stress accompanying intrathyroidal TH accumulation, in particular in the Ctsk(-/-)/Mct8(-/y)/Mct10(-/-) animals. Collectively, our data points to the notion that the absence of cathepsin K and Mct8 leads to excessive thyroglobulin degradation and TH liberation in a non-classical pathway of thyroid auto-regulation. MDPI 2021-01-05 /pmc/articles/PMC7796480/ /pubmed/33466458 http://dx.doi.org/10.3390/ijms22010462 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Venugopalan, Vaishnavi
Al-Hashimi, Alaa
Rehders, Maren
Golchert, Janine
Reinecke, Vivien
Homuth, Georg
Völker, Uwe
Manirajah, Mythili
Touzani, Adam
Weber, Jonas
Bogyo, Matthew S.
Verrey, Francois
Wirth, Eva K.
Schweizer, Ulrich
Heuer, Heike
Kirstein, Janine
Brix, Klaudia
The Thyroid Hormone Transporter Mct8 Restricts Cathepsin-Mediated Thyroglobulin Processing in Male Mice through Thyroid Auto-Regulatory Mechanisms That Encompass Autophagy
title The Thyroid Hormone Transporter Mct8 Restricts Cathepsin-Mediated Thyroglobulin Processing in Male Mice through Thyroid Auto-Regulatory Mechanisms That Encompass Autophagy
title_full The Thyroid Hormone Transporter Mct8 Restricts Cathepsin-Mediated Thyroglobulin Processing in Male Mice through Thyroid Auto-Regulatory Mechanisms That Encompass Autophagy
title_fullStr The Thyroid Hormone Transporter Mct8 Restricts Cathepsin-Mediated Thyroglobulin Processing in Male Mice through Thyroid Auto-Regulatory Mechanisms That Encompass Autophagy
title_full_unstemmed The Thyroid Hormone Transporter Mct8 Restricts Cathepsin-Mediated Thyroglobulin Processing in Male Mice through Thyroid Auto-Regulatory Mechanisms That Encompass Autophagy
title_short The Thyroid Hormone Transporter Mct8 Restricts Cathepsin-Mediated Thyroglobulin Processing in Male Mice through Thyroid Auto-Regulatory Mechanisms That Encompass Autophagy
title_sort thyroid hormone transporter mct8 restricts cathepsin-mediated thyroglobulin processing in male mice through thyroid auto-regulatory mechanisms that encompass autophagy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7796480/
https://www.ncbi.nlm.nih.gov/pubmed/33466458
http://dx.doi.org/10.3390/ijms22010462
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