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

被引:5
作者
Liebscher, Gudrun [1 ]
Vujic, Nemanja [2 ]
Schreiber, Renate [3 ]
Heine, Markus [4 ]
Krebiehl, Caroline [1 ]
Duta-Mare, Madalina [2 ]
Lamberti, Giorgia [1 ]
de Smet, Cedric H. [1 ]
Hess, Michael W. [5 ]
Eichmann, Thomas O. [3 ]
Hoelzl, Sarah [1 ]
Scheja, Ludger [4 ]
Heeren, Joerg [4 ]
Kratky, Dagmar [2 ,6 ]
Huber, Lukas A. [1 ]
机构
[1] Med Univ Innsbruck, Div Cell Biol, Bioctr, Innrain 80-82, A-6020 Innsbruck, Austria
[2] Med Univ Graz, Gottfried Schatz Res Ctr, Mol Biol & Biochem, Neue Stiftingtalstr 6, A-8010 Graz, Austria
[3] Karl Franzens Univ Graz, Inst Mol Biosci, Heinrichstr 31, A-8010 Graz, Austria
[4] Univ Med Ctr Hamburg Eppendorf, Dept Biochem & Mol Cell Biol, Martinistr 52, D-20246 Hamburg, Germany
[5] Med Univ Innsbruck, Inst Histol & Embryol, Mullerstr 59, A-6020 Innsbruck, Austria
[6] BioTechMed Graz, Mozartgasse 12, A-8010 Graz, Austria
来源
MOLECULAR METABOLISM | 2023年 / 71卷
基金
奥地利科学基金会;
关键词
LAMTOR; Ragulator; mTORC1; 2; AKT; Brown adipose tissue; Lysosome; COLD-INDUCED THERMOGENESIS; RAG GTPASES; INSULIN; PROTEIN; MTOR; AKT; PHOSPHORYLATION; ADIPOCYTES; TARGET; IDENTIFICATION;
D O I
10.1016/j.molmet.2023.101705
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
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 & DEG;C, room temperature and 5 & DEG;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 PI3KmTORC2-AKT signaling downstream of the insulin receptor. & COPY; 2023 The Author(s). Published by Elsevier GmbH. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
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页数:16
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共 39 条
[21]   Cell proliferation and apoptosis inhibition: essential processes for recruitment of the full thermogenic capacity-of-brown-adipose-tissue [J].
Nedergaard, Jan ;
Wang, Yanling ;
Cannon, Barbara .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR AND CELL BIOLOGY OF LIPIDS, 2019, 1864 (01) :51-58
[22]   DJ-1 maintains energy and glucose homeostasis by regulating the function of brown adipose tissue [J].
Wu, Rong ;
Liu, Xiao-meng ;
Sun, Jian-guang ;
Chen, Hong ;
Ma, Jun ;
Dong, Meng ;
Peng, Shengyi ;
Wang, Ji-qiu ;
Ding, Jian-qing ;
Li, Dong-hao ;
Speakman, John R. ;
Ning, Guang ;
Jin, Wanzhu ;
Yuan, Zengqiang .
CELL DISCOVERY, 2017, 3
[23]   AGPAT2 is essential for postnatal development and maintenance of white and brown adipose tissue [J].
Cautivo, Kelly M. ;
Lizama, Carlos O. ;
Tapia, Pablo J. ;
Agarwal, Anil K. ;
Garg, Abhimanyu ;
Horton, Jay D. ;
Cortes, Vctor A. .
MOLECULAR METABOLISM, 2016, 5 (07) :491-505
[24]   Adipose mTORC2 is essential for sensory innervation in white adipose tissue and whole-body energy homeostasis [J].
Frei, Irina C. ;
Weissenberger, Diana ;
Ritz, Danilo ;
Heusermann, Wolf ;
Colombi, Marco ;
Shimobayashi, Mitsugu ;
Hall, Michael N. .
MOLECULAR METABOLISM, 2022, 65
[25]   DOES THE GLYCOGEN-SYNTHASE (EC 2.4.1.21) OF BROWN ADIPOSE-TISSUE PLAY A REGULATORY ROLE IN GLUCOSE-HOMEOSTASIS [J].
MADAR, Z ;
HAREL, A .
BRITISH JOURNAL OF NUTRITION, 1991, 66 (01) :95-104
[26]   Brown adipose tissue and glucose homeostasis - the link between climate change and the global rise in obesity and diabetes [J].
Symonds, Michael E. ;
Farhat, Grace ;
Aldiss, Peter ;
Pope, Mark ;
Budge, Helen .
ADIPOCYTE, 2019, 8 (01) :46-50
[27]   METTL3 is essential for postnatal development of brown adipose tissue and energy expenditure in mice [J].
Wang, Yuqin ;
Gao, Ming ;
Zhu, Fuxing ;
Li, Xinzhi ;
Yang, Ying ;
Yan, Qiuxin ;
Jia, Linna ;
Xie, Liwei ;
Chen, Zheng .
NATURE COMMUNICATIONS, 2020, 11 (01)
[28]   Combined Effects of Voluntary Running and Liraglutide on Glucose Homeostasis, Fatty Acid Composition of Brown Adipose Tissue Phospholipids, and White Adipose Tissue Browning in db/db Mice [J].
Yin, Ruili ;
Ma, Yan ;
Zhang, Ning ;
Yang, Longyan ;
Zhao, Dong .
CHINESE JOURNAL OF PHYSIOLOGY, 2022, 65 (03) :117-+
[29]   Sympathetic innervation suppresses the autophagic-lysosomal system in brown adipose tissue under basal and cold-stimulated conditions [J].
Przygodda, Franciele ;
Lautherbach, Natalia ;
Buzelle, Samyra Lopes ;
Goncalves, Dawit Albieiro ;
Assis, Ana Paula ;
Paula-Gomes, Silvia ;
Rissato Garofalo, Maria Antonieta ;
Heck, Lilian Carmo ;
Matsuo, Flavia Sayuri ;
Mota, Ryerson Fonseca ;
Osako, Mariana Kiomy ;
Kettelhut, Isis C. ;
Navegantes, Luiz C. .
JOURNAL OF APPLIED PHYSIOLOGY, 2020, 128 (04) :855-871
[30]   Membrane potential-dependent regulation of mitochondrial complex II by oxaloacetate in interscapular brown adipose tissue [J].
Fink, Brian D. ;
Rauckhorst, Adam J. ;
Taylor, Eric B. ;
Yu, Liping ;
Sivitz, William I. .
FASEB BIOADVANCES, 2022, 4 (03) :197-210