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Dysregulation of Amyloid Precursor Protein Impairs Adipose Tissue Mitochondrial Function and Promotes Obesity

Mitochondrial function in white adipose tissue (WAT) is an important yet understudied aspect in adipocyte biology. Here, we report a role for amyloid precursor protein (APP) in compromising WAT mitochondrial function through a high-fat diet (HFD)-induced, unconventional mis-localization to mitochond...

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Autores principales: An, Yu A., Crewe, Clair, Asterholm, Ingrid Wernstedt, Sun, Kai, Chen, Shiuhwei, Zhang, Fang, Shao, Mengle, Funcke, Jan-Bernd, Zhang, Zhuzhen, Straub, Leon, Klein, Samuel, Kusminski, Christine M., Scherer, Philipp E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6980705/
https://www.ncbi.nlm.nih.gov/pubmed/31984308
http://dx.doi.org/10.1038/s42255-019-0149-1
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author An, Yu A.
Crewe, Clair
Asterholm, Ingrid Wernstedt
Sun, Kai
Chen, Shiuhwei
Zhang, Fang
Shao, Mengle
Funcke, Jan-Bernd
Zhang, Zhuzhen
Straub, Leon
Klein, Samuel
Kusminski, Christine M.
Scherer, Philipp E.
author_facet An, Yu A.
Crewe, Clair
Asterholm, Ingrid Wernstedt
Sun, Kai
Chen, Shiuhwei
Zhang, Fang
Shao, Mengle
Funcke, Jan-Bernd
Zhang, Zhuzhen
Straub, Leon
Klein, Samuel
Kusminski, Christine M.
Scherer, Philipp E.
author_sort An, Yu A.
collection PubMed
description Mitochondrial function in white adipose tissue (WAT) is an important yet understudied aspect in adipocyte biology. Here, we report a role for amyloid precursor protein (APP) in compromising WAT mitochondrial function through a high-fat diet (HFD)-induced, unconventional mis-localization to mitochondria that further promotes obesity. In humans and mice, obese conditions significantly induce APP production in WAT and its enrichment in mitochondria. Mechanistically, a HFD-induced dysregulation of signal recognition particle subunit 54c is responsible for the mis-targeting of APP to adipocyte mitochondria. Mis-localized APP blocks the protein import machinery, leading to mitochondrial dysfunction in WAT. Adipocyte-specific and mitochondria-targeted APP overexpressing mice display increased body mass and reduced insulin sensitivity, along with dysfunctional WAT due to a dramatic hypertrophic program in adipocytes. Elimination of adipocyte APP rescues HFD-impaired mitochondrial function with significant protection from weight gain and systemic metabolic deficiency. Our data highlights an important role of APP in modulating WAT mitochondrial function and obesity-associated metabolic dysfunction.
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spelling pubmed-69807052020-06-01 Dysregulation of Amyloid Precursor Protein Impairs Adipose Tissue Mitochondrial Function and Promotes Obesity An, Yu A. Crewe, Clair Asterholm, Ingrid Wernstedt Sun, Kai Chen, Shiuhwei Zhang, Fang Shao, Mengle Funcke, Jan-Bernd Zhang, Zhuzhen Straub, Leon Klein, Samuel Kusminski, Christine M. Scherer, Philipp E. Nat Metab Article Mitochondrial function in white adipose tissue (WAT) is an important yet understudied aspect in adipocyte biology. Here, we report a role for amyloid precursor protein (APP) in compromising WAT mitochondrial function through a high-fat diet (HFD)-induced, unconventional mis-localization to mitochondria that further promotes obesity. In humans and mice, obese conditions significantly induce APP production in WAT and its enrichment in mitochondria. Mechanistically, a HFD-induced dysregulation of signal recognition particle subunit 54c is responsible for the mis-targeting of APP to adipocyte mitochondria. Mis-localized APP blocks the protein import machinery, leading to mitochondrial dysfunction in WAT. Adipocyte-specific and mitochondria-targeted APP overexpressing mice display increased body mass and reduced insulin sensitivity, along with dysfunctional WAT due to a dramatic hypertrophic program in adipocytes. Elimination of adipocyte APP rescues HFD-impaired mitochondrial function with significant protection from weight gain and systemic metabolic deficiency. Our data highlights an important role of APP in modulating WAT mitochondrial function and obesity-associated metabolic dysfunction. 2019-12-13 2019-12 /pmc/articles/PMC6980705/ /pubmed/31984308 http://dx.doi.org/10.1038/s42255-019-0149-1 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
An, Yu A.
Crewe, Clair
Asterholm, Ingrid Wernstedt
Sun, Kai
Chen, Shiuhwei
Zhang, Fang
Shao, Mengle
Funcke, Jan-Bernd
Zhang, Zhuzhen
Straub, Leon
Klein, Samuel
Kusminski, Christine M.
Scherer, Philipp E.
Dysregulation of Amyloid Precursor Protein Impairs Adipose Tissue Mitochondrial Function and Promotes Obesity
title Dysregulation of Amyloid Precursor Protein Impairs Adipose Tissue Mitochondrial Function and Promotes Obesity
title_full Dysregulation of Amyloid Precursor Protein Impairs Adipose Tissue Mitochondrial Function and Promotes Obesity
title_fullStr Dysregulation of Amyloid Precursor Protein Impairs Adipose Tissue Mitochondrial Function and Promotes Obesity
title_full_unstemmed Dysregulation of Amyloid Precursor Protein Impairs Adipose Tissue Mitochondrial Function and Promotes Obesity
title_short Dysregulation of Amyloid Precursor Protein Impairs Adipose Tissue Mitochondrial Function and Promotes Obesity
title_sort dysregulation of amyloid precursor protein impairs adipose tissue mitochondrial function and promotes obesity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6980705/
https://www.ncbi.nlm.nih.gov/pubmed/31984308
http://dx.doi.org/10.1038/s42255-019-0149-1
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