Glucagon Receptor Signaling and Lipid Metabolism

被引:146
作者
Galsgaard, Katrine D. [1 ,2 ]
Pedersen, Jens [1 ,3 ]
Knop, Filip K. [2 ,4 ,5 ]
Holst, Jens J. [1 ,2 ]
Albrechtsen, Nicolai J. Wewer [1 ,6 ,7 ]
机构
[1] Univ Copenhagen, Fac Hlth & Med Sci, Dept Biomed Sci, Copenhagen, Denmark
[2] Univ Copenhagen, Novo Nordisk Fdn, Ctr Basic Metab Res, Fac Hlth & Med Sci, Copenhagen, Denmark
[3] Univ Copenhagen, Dept Cardiol Nephrol & Endocrinol, Nordsjaellands Hosp Hillerod, Hillerod, Denmark
[4] Gentofte Univ Hosp, Clin Metab Physiol, Steno Diabet Ctr Copenhagen, Hellerup, Denmark
[5] Univ Copenhagen, Fac Hlth & Med Sci, Dept Clin Med, Copenhagen, Denmark
[6] Rigshosp, Dept Clin Biochem, Copenhagen, Denmark
[7] Univ Copenhagen, Novo Nordisk Fdn, Ctr Prot Res, Fac Hlth & Med Sci, Copenhagen, Denmark
关键词
glucagon; lipid; liver; adipose tissue; alpha cell; FREE FATTY-ACID; HORMONE-SENSITIVE LIPASE; CARNITINE PALMITOYLTRANSFERASE-I; INDUCED HEPATIC STEATOSIS; MOUSE PANCREATIC-ISLETS; ALPHA CELL HYPERPLASIA; ADIPOSE-TISSUE; GROWTH-HORMONE; MESSENGER-RNA; POSTPRANDIAL LIPEMIA;
D O I
10.3389/fphys.2019.00413
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Glucagon is secreted from the pancreatic alpha cells upon hypoglycemia and stimulates hepatic glucose production. Type 2 diabetes is associated with dysregulated glucagon secretion, and increased glucagon concentrations contribute to the diabetic hyperglycemia. Antagonists of the glucagon receptor have been considered as glucose-lowering therapy in type 2 diabetes patients, but their clinical applicability has been questioned because of reports of therapy-induced increments in liver fat content and increased plasma concentrations of low-density lipoprotein. Conversely, in animal models, increased glucagon receptor signaling has been linked to improved lipid metabolism. Glucagon acts primarily on the liver and by regulating hepatic lipid metabolism glucagon may reduce hepatic lipid accumulation and decrease hepatic lipid secretion. Regarding whole-body lipid metabolism, it is controversial to what extent glucagon influences lipolysis in adipose tissue, particularly in humans. Glucagon receptor agonists combined with glucagon-like peptide 1 receptor agonists (dual agonists) improve dyslipidemia and reduce hepatic steatosis. Collectively, emerging data support an essential role of glucagon for lipid metabolism.
引用
收藏
页数:11
相关论文
共 147 条
[21]   Long-term exposure of mouse pancreatic islets to oleate or palmitate results in reduced glucose-induced somatostatin and oversecretion of glucagon [J].
Collins, S. C. ;
Salehi, A. ;
Eliasson, L. ;
Olofsson, C. S. ;
Rorsman, P. .
DIABETOLOGIA, 2008, 51 (09) :1689-1693
[22]   Glucagon receptor knockout mice are resistant to diet-induced obesity and streptozotocin-mediated beta cell loss and hyperglycaemia [J].
Conarello, S. L. ;
Jiang, G. ;
Mu, J. ;
Li, Z. ;
Woods, J. ;
Zycband, E. ;
Ronan, J. ;
Liu, F. ;
Roy, R. Sinha ;
Zhu, L. ;
Charron, M. J. ;
Zhang, B. B. .
DIABETOLOGIA, 2007, 50 (01) :142-150
[23]   Glucagon Stimulates Hepatic FGF21 Secretion through a PKA- and EPAC-Dependent Posttranscriptional Mechanism [J].
Cyphert, Holly A. ;
Alonge, Kimberly M. ;
Ippagunta, Siri M. ;
Hillgartner, F. Bradley .
PLOS ONE, 2014, 9 (04)
[24]   A new glucagon and GLP-1 co-agonist eliminates obesity in rodents [J].
Day, Jonathan W. ;
Ottaway, Nickki ;
Patterson, James T. ;
Gelfanov, Vasily ;
Smiley, David ;
Gidda, Jas ;
Findeisen, Hannes ;
Bruemmer, Dennis ;
Drucker, Daniel J. ;
Chaudhary, Nilika ;
Holland, Jenna ;
Hembree, Jazzminn ;
Abplanalp, William ;
Grant, Erin ;
Ruehl, Jennifer ;
Wilson, Hilary ;
Kirchner, Henriette ;
Lockie, Sarah Haas ;
Hofmann, Susanna ;
Woods, Stephen C. ;
Nogueiras, Ruben ;
Pfluger, Paul T. ;
Perez-Tilve, Diego ;
DiMarchi, Richard ;
Tschoep, Matthias H. .
NATURE CHEMICAL BIOLOGY, 2009, 5 (10) :749-757
[25]   Interrupted Glucagon Signaling Reveals Hepatic α Cell Axis and Role for L-Glutamine in α Cell Proliferation [J].
Dean, E. Danielle ;
Li, Mingyu ;
Prasad, Nripesh ;
Wisniewski, Scott N. ;
Von Deylen, Alison ;
Spaeth, Jason ;
Maddison, Lisette ;
Botros, Anthony ;
Sedgeman, Leslie R. ;
Bozadjieva, Nadejda ;
Ilkayeva, Olga ;
Coldren, Anastasia ;
Poffenberger, Greg ;
Shostak, Alena ;
Semich, Michael C. ;
Aamodt, Kristie I. ;
Phillips, Neil ;
Yan, Hai ;
Bernal-Mizrachi, Ernesto ;
Corbin, Jackie D. ;
Vickers, Kasey C. ;
Levy, Shawn E. ;
Dai, Chunhua ;
Newgard, Christopher ;
Gu, Wei ;
Stein, Roland ;
Chen, Wenbiao ;
Powers, Alvin C. .
CELL METABOLISM, 2017, 25 (06) :1362-+
[26]   HEPATIC MITOCHONDRIAL-FUNCTION IN KETOGENIC STATES - DIABETES, STARVATION, AND AFTER GROWTH-HORMONE ADMINISTRATION [J].
DIMARCO, JP ;
HOPPEL, C .
JOURNAL OF CLINICAL INVESTIGATION, 1975, 55 (06) :1237-1244
[27]   METABOLIC CONSEQUENCES OF (REGIONAL) TOTAL PANCREATECTOMY [J].
DRESLER, CM ;
FORTNER, JG ;
MCDERMOTT, K ;
BAJORUNAS, DR .
ANNALS OF SURGERY, 1991, 214 (02) :131-140
[28]   Glucose regulates proinsulin and prosomatostatin but not proglucagon messenger ribonucleic acid levels in rat pancreatic islets [J].
Dumonteil, E ;
Magnan, C ;
Ritz-Laser, B ;
Ktorza, A ;
Meda, P ;
Philippe, J .
ENDOCRINOLOGY, 2000, 141 (01) :174-180
[29]  
EATON RP, 1973, J LIPID RES, V14, P312
[30]   FATTY ACIDS AND RELEASE OF GLUCAGON FROM ISOLATED GUINEA-PIG ISLETS OF LANGERHANS INCUBATED IN-VITRO [J].
EDWARDS, JC ;
TAYLOR, KW .
BIOCHIMICA ET BIOPHYSICA ACTA, 1970, 215 (02) :310-+