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Träfflista för sökning "WFRF:(Kusminski C. M.) "

Search: WFRF:(Kusminski C. M.)

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1.
  • An, Y. A., et al. (author)
  • Dysregulation of amyloid precursor protein impairs adipose tissue mitochondrial function and promotes obesity
  • 2019
  • In: Nature Metabolism. - : Springer Science and Business Media LLC. - 2522-5812. ; 1:12, s. 1243-57
  • Journal article (peer-reviewed)abstract
    • Mitochondrial function in white adipose tissue (WAT) is an important yet understudied aspect of 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 induce substantial APP production in WAT and APP enrichment in mitochondria. Mechanistically, 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. Mice overexpressing adipocyte-specific and mitochondria-targeted APP display increased body mass and reduced insulin sensitivity, along with dysfunctional WAT, owing to a dramatic hypertrophic program in adipocytes. Elimination of adipocyte APP rescues HFD-impaired mitochondrial function with considerable protection from weight gain and systemic metabolic deficiency. Our data highlight an important role for APP in modulating WAT mitochondrial function and obesity-associated metabolic dysfunction.
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2.
  • Zhu, Q., et al. (author)
  • Suppressing adipocyte inflammation promotes insulin resistance in mice
  • 2020
  • In: Molecular Metabolism. - : Elsevier BV. - 2212-8778. ; 39
  • Journal article (peer-reviewed)abstract
    • Objective: Obesity-induced insulin resistance is closely associated with chronic subclinical inflammation in white adipose tissue. However, the mechanistic involvement of adipocyte-derived inflammation under these disease conditions remains unclear. Our aim was to investigate the relative inflammation-related contributions of adipocytes and macrophages to insulin sensitivity. Methods: RIDα/β is an adenoviral protein complex that inhibits several inflammatory pathways, including TLR4, TNFα, and IL1β signaling. We generated novel mouse models with adipocyte-specific and macrophage-specific doxycycline (dox)-inducible RIDα/β-transgenic mice (RIDad and RIDmac mice, respectively). Results: RIDα/β induction significantly reduced LPS-stimulated inflammatory markers, such as Tnf, Il1b, and Saa3 in adipose tissues. Surprisingly, RIDad mice had elevated levels of postprandial glucose and insulin and exhibited glucose intolerance and insulin resistance, even under chow-fed conditions. Moreover, the RIDad mice displayed further insulin resistance under obesogenic (high-fat diet, HFD) conditions despite reduced weight gain. In addition, under pre-existing obese and inflamed conditions on an HFD, subsequent induction of RIDα/β in RIDad mice reduced body weight gain, further exacerbating glucose tolerance, enhancing insulin resistance and fatty liver, and reducing adiponectin levels. This occurred despite effective suppression of the inflammatory pathways (including TNFα and IL1β). In contrast, RIDmac mice, upon HFD feeding, displayed similar weight gain, comparable adiponectin levels, and insulin sensitivity, suggesting that the inflammatory properties of macrophages did not exert a negative impact on metabolic readouts. RIDα/β expression and the ensuing suppression of inflammation in adipocytes enhanced adipose tissue fibrosis and reduced vascularization. Conclusion: Our novel findings further corroborate our previous observations suggesting that suppressing adipocyte inflammation impairs adipose tissue function and promotes insulin resistance, despite beneficial effects on weight gain. © 2020 The Authors
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  • Result 1-2 of 2
Type of publication
journal article (2)
Type of content
peer-reviewed (2)
Author/Editor
An, Y. A. (2)
Wernstedt Asterholm, ... (2)
Kusminski, C. M. (2)
Scherer, P. E. (2)
Zhang, F. (1)
Zhang, Z. (1)
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Zhu, Y. (1)
Kim, M. (1)
Zhao, S (1)
Klein, S. (1)
Sun, K (1)
Crewe, C. (1)
Chen, S. W. (1)
Shao, M. L. (1)
Funcke, J. B. (1)
Zhang, Z. Z. (1)
Straub, L. (1)
Yoshino, J. (1)
Zhu, Q. (1)
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University
University of Gothenburg (2)
Language
English (2)
Research subject (UKÄ/SCB)
Medical and Health Sciences (2)

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