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FoxO1 regulates adipose transdifferentiation and iron influx by mediating Tgfβ1 signaling pathway

Adipose plasticity is critical for metabolic homeostasis. Adipocyte transdifferentiation plays an important role in adipose plasticity, but the molecular mechanism of transdifferentiation remains incompletely understood. Here we show that the transcription factor FoxO1 regulates adipose transdiffere...

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Autores principales: Shi, Limin, Tao, Zhipeng, Zheng, Louise, Yang, Jinying, Hu, Xinran, Scott, Karen, de Kloet, Annette, Krause, Eric, Collins, James F., Cheng, Zhiyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10195981/
https://www.ncbi.nlm.nih.gov/pubmed/37156218
http://dx.doi.org/10.1016/j.redox.2023.102727
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author Shi, Limin
Tao, Zhipeng
Zheng, Louise
Yang, Jinying
Hu, Xinran
Scott, Karen
de Kloet, Annette
Krause, Eric
Collins, James F.
Cheng, Zhiyong
author_facet Shi, Limin
Tao, Zhipeng
Zheng, Louise
Yang, Jinying
Hu, Xinran
Scott, Karen
de Kloet, Annette
Krause, Eric
Collins, James F.
Cheng, Zhiyong
author_sort Shi, Limin
collection PubMed
description Adipose plasticity is critical for metabolic homeostasis. Adipocyte transdifferentiation plays an important role in adipose plasticity, but the molecular mechanism of transdifferentiation remains incompletely understood. Here we show that the transcription factor FoxO1 regulates adipose transdifferentiation by mediating Tgfβ1 signaling pathway. Tgfβ1 treatment induced whitening phenotype in beige adipocytes, reducing UCP1 and mitochondrial capacity and enlarging lipid droplets. Deletion of adipose FoxO1 (adO1KO) dampened Tgfβ1 signaling by downregulating Tgfbr2 and Smad3 and induced browning of adipose tissue in mice, increasing UCP1 and mitochondrial content and activating metabolic pathways. Silencing FoxO1 also abolished the whitening effect of Tgfβ1 on beige adipocytes. The adO1KO mice exhibited a significantly higher energy expenditure, lower fat mass, and smaller adipocytes than the control mice. The browning phenotype in adO1KO mice was associated with an increased iron content in adipose tissue, concurrent with upregulation of proteins that facilitate iron uptake (DMT1 and TfR1) and iron import into mitochondria (Mfrn1). Analysis of hepatic and serum iron along with hepatic iron-regulatory proteins (ferritin and ferroportin) in the adO1KO mice revealed an adipose tissue-liver crosstalk that meets the increased iron requirement for adipose browning. The FoxO1-Tgfβ1 signaling cascade also underlay adipose browning induced by β3-AR agonist CL316243. Our study provides the first evidence of a FoxO1-Tgfβ1 axis in the regulation of adipose browning-whitening transdifferentiation and iron influx, which sheds light on the compromised adipose plasticity in conditions of dysregulated FoxO1 and Tgfβ1 signaling.
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spelling pubmed-101959812023-05-20 FoxO1 regulates adipose transdifferentiation and iron influx by mediating Tgfβ1 signaling pathway Shi, Limin Tao, Zhipeng Zheng, Louise Yang, Jinying Hu, Xinran Scott, Karen de Kloet, Annette Krause, Eric Collins, James F. Cheng, Zhiyong Redox Biol Research Paper Adipose plasticity is critical for metabolic homeostasis. Adipocyte transdifferentiation plays an important role in adipose plasticity, but the molecular mechanism of transdifferentiation remains incompletely understood. Here we show that the transcription factor FoxO1 regulates adipose transdifferentiation by mediating Tgfβ1 signaling pathway. Tgfβ1 treatment induced whitening phenotype in beige adipocytes, reducing UCP1 and mitochondrial capacity and enlarging lipid droplets. Deletion of adipose FoxO1 (adO1KO) dampened Tgfβ1 signaling by downregulating Tgfbr2 and Smad3 and induced browning of adipose tissue in mice, increasing UCP1 and mitochondrial content and activating metabolic pathways. Silencing FoxO1 also abolished the whitening effect of Tgfβ1 on beige adipocytes. The adO1KO mice exhibited a significantly higher energy expenditure, lower fat mass, and smaller adipocytes than the control mice. The browning phenotype in adO1KO mice was associated with an increased iron content in adipose tissue, concurrent with upregulation of proteins that facilitate iron uptake (DMT1 and TfR1) and iron import into mitochondria (Mfrn1). Analysis of hepatic and serum iron along with hepatic iron-regulatory proteins (ferritin and ferroportin) in the adO1KO mice revealed an adipose tissue-liver crosstalk that meets the increased iron requirement for adipose browning. The FoxO1-Tgfβ1 signaling cascade also underlay adipose browning induced by β3-AR agonist CL316243. Our study provides the first evidence of a FoxO1-Tgfβ1 axis in the regulation of adipose browning-whitening transdifferentiation and iron influx, which sheds light on the compromised adipose plasticity in conditions of dysregulated FoxO1 and Tgfβ1 signaling. Elsevier 2023-05-02 /pmc/articles/PMC10195981/ /pubmed/37156218 http://dx.doi.org/10.1016/j.redox.2023.102727 Text en © 2023 The Authors. Published by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Shi, Limin
Tao, Zhipeng
Zheng, Louise
Yang, Jinying
Hu, Xinran
Scott, Karen
de Kloet, Annette
Krause, Eric
Collins, James F.
Cheng, Zhiyong
FoxO1 regulates adipose transdifferentiation and iron influx by mediating Tgfβ1 signaling pathway
title FoxO1 regulates adipose transdifferentiation and iron influx by mediating Tgfβ1 signaling pathway
title_full FoxO1 regulates adipose transdifferentiation and iron influx by mediating Tgfβ1 signaling pathway
title_fullStr FoxO1 regulates adipose transdifferentiation and iron influx by mediating Tgfβ1 signaling pathway
title_full_unstemmed FoxO1 regulates adipose transdifferentiation and iron influx by mediating Tgfβ1 signaling pathway
title_short FoxO1 regulates adipose transdifferentiation and iron influx by mediating Tgfβ1 signaling pathway
title_sort foxo1 regulates adipose transdifferentiation and iron influx by mediating tgfβ1 signaling pathway
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10195981/
https://www.ncbi.nlm.nih.gov/pubmed/37156218
http://dx.doi.org/10.1016/j.redox.2023.102727
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