AMP-activated protein kinase in metabolic control and insulin signaling

被引:1113
作者
Towler, Mhairi C. [1 ]
Hardie, D. Grahame [1 ]
机构
[1] Univ Dundee, Sir James Black Ctr, Coll Life Sci, Div Mol Physiol, Dundee DD1 5EH, Scotland
基金
英国惠康基金;
关键词
calcium signaling; diabetes; insulin; metabolism; signaling pathways;
D O I
10.1161/01.RES.0000256090.42690.05
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The AMP-activated protein kinase (AMPK) system acts as a sensor of cellular energy status that is conserved in all eukaryotic cells. It is activated by increases in the cellular AMP: ATP ratio caused by metabolic stresses that either interfere with ATP production (eg, deprivation for glucose or oxygen) or that accelerate ATP consumption ( eg, muscle contraction). Activation in response to increases in AMP involves phosphorylation by an upstream kinase, the tumor suppressor LKB1. In certain cells (eg, neurones, endothelial cells, and lymphocytes), AMPK can also be activated by a Ca2+- dependent and AMP-independent process involving phosphorylation by an alternate upstream kinase, CaMKK beta. Once activated, AMPK switches on catabolic pathways that generate ATP, while switching off ATP-consuming processes such as biosynthesis and cell growth and proliferation. The AMPK complex contains 3 subunits, with the alpha subunit being catalytic, the alpha subunit containing a glycogen-sensing domain, and the gamma subunits containing 2 regulatory sites that bind the activating and inhibitory nucleotides AMP and ATP. Although it may have evolved to respond to metabolic stress at the cellular level, hormones and cytokines such as insulin, leptin, and adiponectin can interact with the system, and it now appears to play a key role in maintaining energy balance at the whole body level. The AMPK system may be partly responsible for the health benefits of exercise and is the target for the antidiabetic drug metformin. It is a key player in the development of new treatments for obesity, type 2 diabetes, and the metabolic syndrome.
引用
收藏
页码:328 / 341
页数:14
相关论文
共 168 条
[51]   The AMP-activated/SNF1 protein kinase subfamily: Metabolic sensors of the eukaryotic cell? [J].
Hardie, DG ;
Carling, D ;
Carlson, M .
ANNUAL REVIEW OF BIOCHEMISTRY, 1998, 67 :821-855
[52]   AMP-activated protein kinase: an ultrasensitive system for monitoring cellular energy charge [J].
Hardie, DG ;
Salt, IP ;
Hawley, SA ;
Davies, SP .
BIOCHEMICAL JOURNAL, 1999, 338 :717-722
[53]   The TSC1-2 tumor suppressor controls insulin-PI3K signaling via regulation of IRS proteins [J].
Harrington, LS ;
Findlay, GM ;
Gray, A ;
Tolkacheva, T ;
Wigfield, S ;
Rebholz, H ;
Barnett, J ;
Leslie, NR ;
Cheng, S ;
Shepherd, PR ;
Gout, I ;
Downes, CP ;
Lamb, RE .
JOURNAL OF CELL BIOLOGY, 2004, 166 (02) :213-223
[54]   The antidiabetic drug metformin activates the AMP-activated protein kinase cascade via an adenine nucleotide-independent mechanism [J].
Hawley, SA ;
Gadalla, AE ;
Olsen, GS ;
Hardie, DG .
DIABETES, 2002, 51 (08) :2420-2425
[55]   5'-AMP ACTIVATES THE AMP-ACTIVATED PROTEIN-KINASE CASCADE AND CA2+/CALMODULIN ACTIVATES THE CALMODULIN-DEPENDENT PROTEIN-KINASE-I CASCADE, VIA 3 INDEPENDENT MECHANISMS [J].
HAWLEY, SA ;
SELBERT, MA ;
GOLDSTEIN, EG ;
EDELMAN, AM ;
CARLING, D ;
HARDIE, DG .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (45) :27186-27191
[56]   Calmodulin-dependent protein kinase kinase-β is an alternative upstream kinase for AMP-activated protein kinase [J].
Hawley, SA ;
Pan, DA ;
Mustard, KJ ;
Ross, L ;
Bain, J ;
Edelman, AM ;
Frenguelli, BG ;
Hardie, DG .
CELL METABOLISM, 2005, 2 (01) :9-19
[57]   Characterization of the AMP-activated protein kinase kinase from rat liver and identification of threonine 172 as the major site at which it phosphorylates AMP-activated protein kinase [J].
Hawley, SA ;
Davison, M ;
Woods, A ;
Davies, SP ;
Beri, RK ;
Carling, D ;
Hardie, DG .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (44) :27879-27887
[58]  
Hawley Simon A, 2003, J Biol, V2, P28, DOI 10.1186/1475-4924-2-28
[59]   Evidence for 5′AMP-activated protein kinase mediation of the effect of muscle contraction on glucose transport [J].
Hayashi, T ;
Hirshman, MF ;
Kurth, EJ ;
Winder, WW ;
Goodyear, LJ .
DIABETES, 1998, 47 (08) :1369-1373
[60]   Chronic activation of 5′-AMP-activated protein kinase increases GLUT-4, hexokinase, and glycogen in muscle [J].
Holmes, BF ;
Kurth-Kraczek, EJ ;
Winder, WW .
JOURNAL OF APPLIED PHYSIOLOGY, 1999, 87 (05) :1990-1995