内科学
内分泌学
减肥
骨骼肌
胞浆
胰岛素
体育锻炼
胰岛素抵抗
线粒体
运动生理学
生物
有氧运动
鞘脂
脂肪组织
医学
肥胖
力量训练
化学
耐力训练
饮食性肥胖
葡萄糖摄取
糖尿病
脂质代谢
体重增加
碳水化合物代谢
2型糖尿病
作者
Simona Zarini,Karin Zemski Berry,Amanda Garfield,Emily Macias,Purevsuren Jambal,Sophia Bowen,Melanie G. Cree,Janet K. Snell‐Bergeon,Chris Johnson,P. Darrell Neufer,Ian Tamburini,MARCUS SELDIN,Bryan C. Bergman
出处
期刊:Diabetes
[American Diabetes Association]
日期:2026-08-18
摘要
Localized subcellular muscle lipid accumulation associates with insulin resistance, but independent effects of weight loss or exercise training are unknown. Forty-six men and women with obesity completed 12-week weight loss only, endurance exercise training only without weight loss, or delayed control interventions. Following weight loss, body weight decreased 10% along with a 42% increase in insulin sensitivity. After exercise training, VO2peak increased 9% along with a 23% increase in insulin sensitivity. Whole muscle triacylglycerols (TAGs) increased in the control group, while mitochondrial/endoplasmic reticulum (ER) TAG decreased after weight loss and cytosolic TAGs increased after exercise training. Exercise training increased whole muscle total and 1,2-diacylglycerols (1,2-DAGs) through enhanced cytosolic storage. Total mitochondrial DAGs decreased after weight loss yet increased following exercise training and control. Exercise training increased cytosolic storage of most sphingolipids. Differential gene expression analysis revealed exercise increased mitochondrial function, whereas weight loss reduced inflammation and immune signaling. Only exercise training prevented the inhibition of mitochondrial respiration following exogenous administration of ceramides and di-C18:0-DAG. These data reveal weight loss and exercise training increase cytosolic storage of sphingolipids, weight loss decreases mitochondrial/ER TAG accumulation, and exercise training increases mitochondrial/ER and cytosolic DAGs, suggesting changes in specific subcellular lipid localization may impact muscle insulin sensitization. Skeletal Muscle Diacylglycerol and Sphingolipids – Impact of Localization and Species on Insulin Resistance in Humans, NCT03077360, ClinicalTrials.gov. Article Highlights Subcellular accumulation of lipids is linked to insulin resistance, but changes in localization from weight loss or exercise training have not been thoroughly explored. We evaluated the independent effects of two insulin-sensitizing interventions, weight loss and exercise training, on lipid subcellular distribution in fractionated skeletal muscle, muscle mitochondrial function, and gene expression. Exercise training increased cytosolic storage of diacylglycerols and sphingolipids, and weight loss increased cytosolic sphingosine and decreased mitochondrial/endoplasmic reticulum triacylglycerol and diacylglycerol accumulation. Exercise training prevented the negative effects of mitochondrial lipids on mitochondrial function. Changes in specific subcellular lipid storage help explain muscle insulin sensitization following lifestyle interventions.
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