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The lysosomal LAMTOR / Ragulator complex is essential for nutrient homeostasis in brown adipose tissue

Authors :
Gudrun Liebscher
Nemanja Vujic
Renate Schreiber
Markus Heine
Caroline Krebiehl
Madalina Duta-Mare
Giorgia Lamberti
Cedric H. de Smet
Michael W. Hess
Thomas O. Eichmann
Sarah Hölzl
Ludger Scheja
Joerg Heeren
Dagmar Kratky
Lukas A. Huber
Source :
Molecular Metabolism, Vol 71, Iss , Pp 101705- (2023)
Publication Year :
2023
Publisher :
Elsevier, 2023.

Abstract

Objective: In brown adipose tissue (iBAT), the balance between lipid/glucose uptake and lipolysis is tightly regulated by insulin signaling. Downstream of the insulin receptor, PDK1 and mTORC2 phosphorylate AKT, which activates glucose uptake and lysosomal mTORC1 signaling. The latter requires the late endosomal/lysosomal adaptor and MAPK and mTOR activator (LAMTOR/Ragulator) complex, which serves to translate the nutrient status of the cell to the respective kinase. However, the role of LAMTOR in metabolically active iBAT has been elusive. Methods: Using an AdipoqCRE-transgenic mouse line, we deleted LAMTOR2 (and thereby the entire LAMTOR complex) in adipose tissue (LT2 AKO). To examine the metabolic consequences, we performed metabolic and biochemical studies in iBAT isolated from mice housed at different temperatures (30 °C, room temperature and 5 °C), after insulin treatment, or in fasted and refed condition. For mechanistic studies, mouse embryonic fibroblasts (MEFs) lacking LAMTOR 2 were analyzed. Results: Deletion of the LAMTOR complex in mouse adipocytes resulted in insulin-independent AKT hyperphosphorylation in iBAT, causing increased glucose and fatty acid uptake, which led to massively enlarged lipid droplets. As LAMTOR2 was essential for the upregulation of de novo lipogenesis, LAMTOR2 deficiency triggered exogenous glucose storage as glycogen in iBAT. These effects are cell autonomous, since AKT hyperphosphorylation was abrogated by PI3K inhibition or by deletion of the mTORC2 component Rictor in LAMTOR2-deficient MEFs. Conclusions: We identified a homeostatic circuit for the maintenance of iBAT metabolism that links the LAMTOR-mTORC1 pathway to PI3K-mTORC2-AKT signaling downstream of the insulin receptor.

Details

Language :
English
ISSN :
22128778
Volume :
71
Issue :
101705-
Database :
Directory of Open Access Journals
Journal :
Molecular Metabolism
Publication Type :
Academic Journal
Accession number :
edsdoj.80ac827ee9ab454b8f1e8329b4b25034
Document Type :
article
Full Text :
https://doi.org/10.1016/j.molmet.2023.101705