骨骼肌
内科学
内分泌学
TFAM公司
2型糖尿病
胰岛素抵抗
安普克
生物
尼泊尔卢比1
线粒体
下调和上调
胰岛素
医学
糖尿病
细胞生物学
线粒体生物发生
基因
生物化学
蛋白激酶A
磷酸化
作者
Anja Böhm,Christoph Hoffmann,Martin Irmler,Patrick Schneeweiß,G. Schnauder,Corinna Sailer,V Schmid,Jens Hudemann,Jürgen Machann,Fritz Schick,Johannes Beckers,Martin Hrabě de Angelis,Harald Staiger,Andreas Fritsche,Norbert Stefan,Andreas M. Nieß,Hans‐Ulrich Häring,Cora Weigert
出处
期刊:Diabetes
[American Diabetes Association]
日期:2016-06-29
卷期号:65 (10): 2849-2861
被引量:77
摘要
A substantial number of people at risk of developing type 2 diabetes could not improve insulin sensitivity by physical training intervention. We studied the mechanisms of this impaired exercise response in 20 middle-aged individuals at high risk of developing type 2 diabetes who performed 8 weeks of controlled cycling and walking training at 80% individual Vo2 peak. Participants identified as nonresponders in insulin sensitivity (based on the Matsuda index) did not differ in preintervention parameters compared with high responders. The failure to increase insulin sensitivity after training correlates with impaired upregulation of mitochondrial fuel oxidation genes in skeletal muscle, and with the suppression of the upstream regulators PGC1α and AMPKα2. The muscle transcriptomes of the nonresponders are further characterized by the activation of transforming growth factor (TGF)-β and TGF-β target genes, which is associated with increases in inflammatory and macrophage markers. TGF-β1 as inhibitor of mitochondrial regulators and insulin signaling is validated in human skeletal muscle cells. Activated TGF-β1 signaling downregulates the abundance of PGC1α, AMPKα2, the mitochondrial transcription factor TFAM, and mitochondrial enzymes. Thus, the data suggest that increased TGF-β activity in skeletal muscle can attenuate the improvement of mitochondrial fuel oxidation after training and contribute to the failure to increase insulin sensitivity.
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