The AMP-activated protein kinase α2 catalytic subunit controls whole-body insulin sensitivity

被引:437
作者
Viollet, B
Andreelli, F
Jorgensen, SB
Perrin, C
Geloen, A
Flamez, D
Mu, J
Lenzner, C
Baud, O
Bennoun, M
Gomas, E
Nicolas, G
Wojtaszewski, JFP
Kahn, A
Carling, D
Schuit, FC
Birnbaum, MJ
Richter, EA
Burcelin, R
Vaulont, S
机构
[1] Univ Paris 05, CNRS, INSERM, Dept Genet Dev & Mol Pathol,Inst Cochin, F-75014 Paris, France
[2] Univ Copenhagen, Dept Human Physiol, Copenhagen Muscle Res Ctr, Exercise & Sport Res Inst, Copenhagen, Denmark
[3] Univ Toulouse 3, Rangueil Hosp, CNRS, Unite Mixte Rech 5018, F-31062 Toulouse, France
[4] Inst Natl Sci Appl, INSERM, F-69621 Villeurbanne, France
[5] Free Univ Brussels, Biochem Lab, Diabet Res Ctr, Brussels, Belgium
[6] Univ Penn, Sch Med, Howard Hughes Med Inst, Philadelphia, PA 19104 USA
[7] Hammersmith Hosp, MRC, Ctr Clin Sci, Cellular Stress Grp, London W12 0HS, England
关键词
D O I
10.1172/JCI200316567
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
AMP-activated protein kinase (AMPK) is viewed as a fuel sensor for glucose and lipid metabolism. To better understand the physiological role of AMPK, we generated a knockout mouse model in which the AMPKalpha2 catalytic subunit gene was inactivated. AMPKalpha2(-/-) mice presented high glucose levels in the fed period and during an oral glucose challenge associated with low insulin plasma levels. However, in isolated AMPKalpha2(-/-) pancreatic islets, glucose- and L-arginine-stimulated insulin secretion were not affected. AMPKalpha2(-/-) mice have reduced insulin-stimulated whole-body glucose utilization and muscle glycogen synthesis rates assessed in vivo by the hyperinsulinemic euglycemic clamp technique. Surprisingly, both parameters were not altered in mice expressing a dominant-negative mutant of AMPK in skeletal muscle. Furthermore, glucose transport was normal in incubated isolated AMPKalpha2(-/-) muscles. These data indicate that AMPKalpha2 in tissues other than skeletal muscles regulates insulin action. Concordantly, we found an increased daily urinary catecholamine excretion in AMPKalpha2(-/-) mice, suggesting altered function of the autonomic nervous system that could explain both the impaired insulin secretion and insulin sensitivity observed in vivo. Therefore, extramuscular AMPKalpha2 catalytic subunit is important for whole-body insulin action in vivo, probably through modulation of sympathetic nervous activity.
引用
收藏
页码:91 / 98
页数:8
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