Chronic Intermittent Hypoxia Impairs Insulin Sensitivity but Improves Whole-Body Glucose Tolerance by Activating Skeletal Muscle AMPK

被引:83
作者
Thomas, Amandine [1 ,2 ]
Belaidi, Elise [1 ,2 ]
Moulin, Sophie [1 ,2 ]
Horman, Sandrine [3 ]
van der Zon, Gerard C. [4 ]
Viollet, Benoit [5 ,6 ,7 ]
Levy, Patrick [1 ,2 ]
Bertrand, Luc [3 ]
Pepin, Jean-Louis [1 ,2 ]
Godin-Ribuot, Diane [1 ,2 ]
Guigas, Bruno [4 ,8 ]
机构
[1] Univ Grenoble Alpes, Lab HP2, Grenoble, France
[2] INSERM, U1042, Grenoble, France
[3] Catholic Univ Louvain, Inst Rech Expt & Clin, Pole Cardiovasc Res, Brussels, Belgium
[4] Leiden Univ, Dept Mol Cell Biol, Med Ctr, Leiden, Netherlands
[5] Inst Cochin, INSERM, U1016, Paris, France
[6] CNRS, UMR8104, Paris, France
[7] Univ Paris 05, Sorbonne Paris Cite, Paris, France
[8] Leiden Univ, Dept Parasitol, Med Ctr, Leiden, Netherlands
关键词
OBSTRUCTIVE SLEEP-APNEA; ADIPOSE-TISSUE; METABOLIC-RESPONSES; RESISTANCE; MICE; PHOSPHORYLATION; PREVALENCE; DEFICIENCY; EXPRESSION; DISORDERS;
D O I
10.2337/db17-0186
中图分类号
R5 [内科学];
学科分类号
100201 [内科学];
摘要
Obstructive sleep apnea syndrome is a highly prevalent disease resulting in transient respiratory arrest and chronic intermittent hypoxia (cIH). cIH is associated with insulin resistance and impaired metabolic homeostasis in rodents and humans, but the exact underlying mechanisms remain unclear. In the current study, we investigated the effects of 2 weeks of cIH (1-min cycle, fraction of inspired oxygen 21-5%, 8 h/day) on whole-body insulin sensitivity and glucose tolerance in lean mice. Although food intake and body weight were reduced compared with normoxia, cIH induced systemic insulin resistance in a hypoxia-inducible factor 1-independent manner and impaired insulin signaling in liver, white adipose tissue, and skeletal muscle. Unexpectedly, cIH improved whole-body glucose tolerance independently of changes in body weight and glucose-induced insulin response. This effect was associated with elevated phosphorylation of Thr172-AMPK and Ser237-TBC1 domain family member 1 (TBC1D1) in skeletal muscle, suggesting a tissue-specific AMPK-dependent increase in TBC1D1-driven glucose uptake. Remarkably, although food intake, body weight, and systemic insulin sensitivity were still affected, the improvement in glucose tolerance by cIH was abolished in muscle-specific AMPK alpha 1 alpha 2-deficient mice. We conclude that cIH impairs insulin sensitivity while improving whole-body glucose tolerance by promoting specific activation of the skeletal muscle AMPK pathway.
引用
收藏
页码:2942 / 2951
页数:10
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