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FBF1 deficiency promotes beiging and healthy expansion of white adipose tissue

Preadipocytes dynamically produce sensory cilia. However, the role of primary cilia in preadipocyte differentiation and adipose homeostasis remains poorly understood. We previously identified transition fiber component FBF1 as an essential player in controlling selective cilia import. Here, we estab...

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Autores principales: Zhang, Yingyi, Hao, Jielu, Tarrago, Mariana G., Warner, Gina M., Giorgadze, Nino, Wei, Qing, Huang, Yan, He, Kai, Chen, Chuan, Peclat, Thais R., White, Thomas A., Ling, Kun, Tchkonia, Tamar, Kirkland, James L., Chini, Eduardo N., Hu, Jinghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8428195/
https://www.ncbi.nlm.nih.gov/pubmed/34348145
http://dx.doi.org/10.1016/j.celrep.2021.109481
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author Zhang, Yingyi
Hao, Jielu
Tarrago, Mariana G.
Warner, Gina M.
Giorgadze, Nino
Wei, Qing
Huang, Yan
He, Kai
Chen, Chuan
Peclat, Thais R.
White, Thomas A.
Ling, Kun
Tchkonia, Tamar
Kirkland, James L.
Chini, Eduardo N.
Hu, Jinghua
author_facet Zhang, Yingyi
Hao, Jielu
Tarrago, Mariana G.
Warner, Gina M.
Giorgadze, Nino
Wei, Qing
Huang, Yan
He, Kai
Chen, Chuan
Peclat, Thais R.
White, Thomas A.
Ling, Kun
Tchkonia, Tamar
Kirkland, James L.
Chini, Eduardo N.
Hu, Jinghua
author_sort Zhang, Yingyi
collection PubMed
description Preadipocytes dynamically produce sensory cilia. However, the role of primary cilia in preadipocyte differentiation and adipose homeostasis remains poorly understood. We previously identified transition fiber component FBF1 as an essential player in controlling selective cilia import. Here, we establish Fbf1(tm1a/tm1a) mice and discover that Fbf1(tm1a/tm1a) mice develop severe obesity, but surprisingly, are not predisposed to adverse metabolic complications. Obese Fbf1(tm1a/tm1a) mice possess unexpectedly healthy white fat tissue characterized by spontaneous upregulated beiging, hyperplasia but not hypertrophy, and low inflammation along the lifetime. Mechanistically, FBF1 governs preadipocyte differentiation by constraining the beiging program through an AKAP9-dependent, cilia-regulated PKA signaling, while recruiting the BBS chaperonin to transition fibers to suppress the hedgehog signaling-dependent adipogenic program. Remarkably, obese Fbf1(tm1a/tm1a) mice further fed a high-fat diet are protected from diabetes and premature death. We reveal a central role for primary cilia in the fate determination of preadipocytes and the generation of metabolically healthy fat tissue.
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spelling pubmed-84281952021-09-09 FBF1 deficiency promotes beiging and healthy expansion of white adipose tissue Zhang, Yingyi Hao, Jielu Tarrago, Mariana G. Warner, Gina M. Giorgadze, Nino Wei, Qing Huang, Yan He, Kai Chen, Chuan Peclat, Thais R. White, Thomas A. Ling, Kun Tchkonia, Tamar Kirkland, James L. Chini, Eduardo N. Hu, Jinghua Cell Rep Article Preadipocytes dynamically produce sensory cilia. However, the role of primary cilia in preadipocyte differentiation and adipose homeostasis remains poorly understood. We previously identified transition fiber component FBF1 as an essential player in controlling selective cilia import. Here, we establish Fbf1(tm1a/tm1a) mice and discover that Fbf1(tm1a/tm1a) mice develop severe obesity, but surprisingly, are not predisposed to adverse metabolic complications. Obese Fbf1(tm1a/tm1a) mice possess unexpectedly healthy white fat tissue characterized by spontaneous upregulated beiging, hyperplasia but not hypertrophy, and low inflammation along the lifetime. Mechanistically, FBF1 governs preadipocyte differentiation by constraining the beiging program through an AKAP9-dependent, cilia-regulated PKA signaling, while recruiting the BBS chaperonin to transition fibers to suppress the hedgehog signaling-dependent adipogenic program. Remarkably, obese Fbf1(tm1a/tm1a) mice further fed a high-fat diet are protected from diabetes and premature death. We reveal a central role for primary cilia in the fate determination of preadipocytes and the generation of metabolically healthy fat tissue. 2021-08-03 /pmc/articles/PMC8428195/ /pubmed/34348145 http://dx.doi.org/10.1016/j.celrep.2021.109481 Text en 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/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Zhang, Yingyi
Hao, Jielu
Tarrago, Mariana G.
Warner, Gina M.
Giorgadze, Nino
Wei, Qing
Huang, Yan
He, Kai
Chen, Chuan
Peclat, Thais R.
White, Thomas A.
Ling, Kun
Tchkonia, Tamar
Kirkland, James L.
Chini, Eduardo N.
Hu, Jinghua
FBF1 deficiency promotes beiging and healthy expansion of white adipose tissue
title FBF1 deficiency promotes beiging and healthy expansion of white adipose tissue
title_full FBF1 deficiency promotes beiging and healthy expansion of white adipose tissue
title_fullStr FBF1 deficiency promotes beiging and healthy expansion of white adipose tissue
title_full_unstemmed FBF1 deficiency promotes beiging and healthy expansion of white adipose tissue
title_short FBF1 deficiency promotes beiging and healthy expansion of white adipose tissue
title_sort fbf1 deficiency promotes beiging and healthy expansion of white adipose tissue
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8428195/
https://www.ncbi.nlm.nih.gov/pubmed/34348145
http://dx.doi.org/10.1016/j.celrep.2021.109481
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