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박성호

Park, Sung Ho
Laboratory of Molecular Immunology
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High levels of intracellular endotrophin in adipocytes mediate COPII vesicle supplies to autophagosome to impair autophagic flux and contribute to systemic insulin resistance in obesity

Author(s)
Oh, JiyoungPark, ChanhoKim, SaheeKim, MinKim, Chu-SookJo, WoobeenPark, Sung HoYi, Gwan-SuPark, Jiyoung
Issued Date
2023-08
DOI
10.1016/j.metabol.2023.155629
URI
https://scholarworks.unist.ac.kr/handle/201301/64469
Citation
METABOLISM-CLINICAL AND EXPERIMENTAL, v.145, pp.155629
Abstract
Background and aims
Extracellular matrix (ECM) homeostasis plays a crucial role in metabolic plasticity and endocrine function of adipose tissue. High levels of intracellular endotrophin, a cleavage peptide of type VI collagen alpha 3 chain (Col6a3), have been frequently observed in adipocyte in obesity and diabetes. However, how endotrophin intracellularly traffics and influences metabolic homeostasis in adipocyte remains unknown. Therefore, we aimed to investigate the trafficking of endotrophin and its metabolic effects in adipocytes depending on lean or obese condition.

Methods
We used doxycycline-inducible adipocyte-specific endotrophin overexpressed mice for a gain-of-function study and CRISPR-Cas9 system-based Col6a3-deficient mice for a loss-of-function study. Various molecular and biochemical techniques were employed to examine the effects of endotrophin on metabolic parameters.

Results
In adipocytes during obesity, the majority of endosomal endotrophin escapes lysosomal degradation and is released into the cytosol to mediate direct interactions between SEC13, a major component of coat protein complex II (COPII) vesicles, and autophagy-related 7 (ATG7), leading to the increased formation of autophagosomes. Autophagosome accumulation disrupts the balance of autophagic flux, resulting in adipocyte death, inflammation, and insulin resistance. These adverse metabolic effects were ameliorated by either suppressing ATG7 with siRNA ex vivo or neutralizing endotrophin with monoclonal antibodies in vivo.

Conclusions
High levels of intracellular endotrophin-mediated autophagic flux impairment in adipocyte contribute to metabolic dysfunction such as apoptosis, inflammation, and insulin resistance in obesity.
Publisher
Elsevier BV
ISSN
0026-0495
Keyword (Author)
AdipocyteAutophagyCOPII vesiclesEndotrophinInsulin resistanceObesity
Keyword
ADIPOSE-TISSUE AUTOPHAGYCOLLAGEN VIEXTRACELLULAR-MATRIXMECHANISMSREACTIVATIONINFLAMMATIONDYSFUNCTIONENDOCYTOSISBIOGENESISEXPRESSION

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