The ANGPTL3-4-8 model, a molecular mechanism for triglyceride trafficking

被引:187
作者
Zhang, Ren [1 ]
机构
[1] Wayne State Univ, Sch Med, Ctr Mol Med & Genet, 540 East Canfield St, Detroit, MI 48201 USA
关键词
Angptl3; Angptl4; Angptl8; lipasin; lipoprotein lipase; triglyceride; ANGIOPOIETIN-LIKE PROTEIN; LIPOPROTEIN-LIPASE ACTIVITY; CIRCULATING BETATROPHIN CONCENTRATIONS; HIGH-DENSITY-LIPOPROTEIN; LIPID-METABOLISM; ADIPOSE-TISSUE; SEVERE HYPERTRIGLYCERIDEMIA; SKELETAL-MUSCLE; KNOCKOUT MICE; TARGET GENE;
D O I
10.1098/rsob.150272
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Lipoprotein lipase (LPL) is a rate-limiting enzyme for hydrolysing circulating triglycerides (TG) into free fatty acids that are taken up by peripheral tissues. Postprandial LPL activity rises in white adipose tissue (WAT), but declines in the heart and skeletal muscle, thereby directing circulating TG to WAT for storage; the reverse is true during fasting. However, the mechanism for the tissue-specific regulation of LPL activity during the fed-fast cycle has been elusive. Recent identification of lipasin/angiopoietin-like 8 (Angptl8), a feeding-induced hepatokine, together with Angptl3 and Angptl4, provides intriguing, yet puzzling, insights, because all the three Angptl members are LPL inhibitors, and the deficiency (overexpression) of any one causes hypotriglyceridaemia (hypertriglyceridaemia). Then, why does nature need all of the three? Our recent data that Angptl8 negatively regulates LPL activity specifically in cardiac and skeletal muscles suggest an Angptl3-4-8 model: feeding induces Angptl8, activating the Angptl8-Angptl3 pathway, which inhibits LPL in cardiac and skeletal muscles, thereby making circulating TG available for uptake by WAT, in which LPL activity is elevated owing to diminished Angptl4; the reverse is true during fasting, which suppresses Angptl8 but induces Angptl4, thereby directing TG to muscles. The model suggests a general framework for how TG trafficking is regulated.
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页数:11
相关论文
共 106 条
[1]   Circulating angiopoietin-like protein 8 (betatrophin) association with HsCRP and metabolic syndrome [J].
Abu-Farha, Mohamed ;
Abubaker, Jehad ;
Al-Khairi, Irina ;
Cherian, Preethi ;
Noronha, Fiona ;
Kavalakatt, Sina ;
Khadir, Abdelkrim ;
Behbehani, Kazem ;
Alarouj, Monira ;
Bennakhi, Abdullah ;
Elkum, Naser .
CARDIOVASCULAR DIABETOLOGY, 2016, 15
[2]   Circulating ANGPTL8/Betatrophin Is Increased in Obesity and Reduced after Exercise Training [J].
Abu-Farha, Mohamed ;
Sriraman, Devarajan ;
Cherian, Preethi ;
AlKhairi, Irina ;
Elkum, Naser ;
Behbehani, Kazem ;
Abubaker, Jehad .
PLOS ONE, 2016, 11 (01)
[3]   Cardiac-specific knock-out of lipoprotein lipase alters plasma lipoprotein triglyceride metabolism and cardiac gene expression [J].
Augustus, A ;
Yagyu, H ;
Haemmerle, G ;
Bensadoun, A ;
Vikramadithyan, RK ;
Park, SY ;
Kim, JK ;
Zechner, R ;
Goldberg, IJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (24) :25050-25057
[4]   Circulating Betatrophin Levels Are Increased in Anorexia and Decreased in Morbidly Obese Women [J].
Barja-Fernandez, Silvia ;
Folgueira, Cintia ;
Seoane, Luisa M. ;
Casanueva, Felipe F. ;
Dieguez, Carlos ;
Castelao, Cecilia ;
Agueera, Zaida ;
Banos, Rosa ;
Botella, Cristina ;
de la Torre, Rafael ;
Fernandez-Garcia, Jose C. ;
Fernandez-Real, Jose M. ;
Fruehbeck, Gema ;
Gomez-Ambrosi, Javier ;
Jimenez-Murcia, Susana ;
Tinahones, Francisco J. ;
Estivill, Xavier ;
Fernandez-Aranda, Fernando ;
Nogueiras, Ruben .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2015, 100 (09) :E1188-E1196
[5]   Glycosylphosphatidylinositol-anchored high-density lipoprotein-binding protein 1 plays a critical role in the lipolytic processing of chylomicrons [J].
Beigneux, Anne P. ;
Davies, Brandon S. J. ;
Gin, Peter ;
Weinstein, Michael M. ;
Farber, Emily ;
Qiao, Xin ;
Peale, Franklin ;
Bunting, Stuart ;
Walzem, Rosemary L. ;
Wong, Jinny S. ;
Blaner, William S. ;
Ding, Zhi-Ming ;
Melford, Kristan ;
Wongsiriroj, Nuttaporn ;
Shu, Xiao ;
de Sauvage, Fred ;
Ryan, Robert O. ;
Fong, Loren G. ;
Bensadoun, Andre ;
Young, Stephen G. .
CELL METABOLISM, 2007, 5 (04) :279-291
[6]   Chylomicronemia With a Mutant GPIHBP1 (Q115P) That Cannot Bind Lipoprotein Lipase [J].
Beigneux, Anne P. ;
Franssen, Remco ;
Bensadoun, Andre ;
Gin, Peter ;
Melford, Kristan ;
Peter, Jorge ;
Walzem, Rosemary L. ;
Weinstein, Michael M. ;
Davies, Brandon S. J. ;
Kuivenhoven, Jan A. ;
Kastelein, John J. P. ;
Fong, Loren G. ;
Dallinga-Thie, Geesje M. ;
Young, Stephen G. .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2009, 29 (06) :956-U447
[7]   Angptl4 links α-cell proliferation following glucagon receptor inhibition with adipose tissue triglyceride metabolism [J].
Ben-Zvi, Danny ;
Barrandon, Ornella ;
Hadley, Stephanie ;
Blum, Barak ;
Peterson, Quinn P. ;
Melton, Douglas A. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2015, 112 (50) :15498-15503
[8]  
BENZEEV O, 1983, J BIOL CHEM, V258, P3632
[9]   Down-regulation of adipose tissue lipoprotein lipase during fasting requires that a gene, separate from the lipase gene, is switched on [J].
Bergö, M ;
Wu, GS ;
Ruge, T ;
Olivecrona, T .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (14) :11927-11932
[10]   A 3-day-old neonate with severe hypertriglyceridemia from novel mutations of the GPIHBP1 gene [J].
Buonuomo, Paola Sabrina ;
Bartuli, Andrea ;
Rabacchi, Claudio ;
Bertolini, Stefano ;
Calandra, Sebastiano .
JOURNAL OF CLINICAL LIPIDOLOGY, 2015, 9 (02) :265-270