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运动训练改变了胰岛素抵抗男性骨骼肌时钟基因表达,但不改变其底物代谢的 24 小时节律性。

Exercise training modifies skeletal muscle clock gene expression but not 24-hour rhythmicity in substrate metabolism of men with insulin resistance.

机构信息

Department of Nutrition and Movement Sciences, NUTRIM School for Nutrition and Translational Research in Metabolism, Maastricht University Medical Center, Maastricht, The Netherlands.

出版信息

J Physiol. 2024 Dec;602(23):6417-6433. doi: 10.1113/JP285523. Epub 2023 Dec 5.

Abstract

Twenty-four hour rhythmicity in whole-body substrate metabolism, skeletal muscle clock gene expression and mitochondrial respiration is compromised upon insulin resistance. With exercise training known to ameliorate insulin resistance, our objective was to test if exercise training can reinforce diurnal variation in whole-body and skeletal muscle metabolism in men with insulin resistance. In a single-arm longitudinal design, 10 overweight and obese men with insulin resistance performed 12 weeks of high-intensity interval training recurrently in the afternoon (between 14.00 and 18.00 h) and were tested pre- and post-exercise training, while staying in a metabolic research unit for 2 days under free-living conditions with regular meals. On the second days, indirect calorimetry was performed at 08.00, 13.00, 18.00, 23.00 and 04.00 h, muscle biopsies were taken from the vastus lateralis at 08.30, 13.30 and 23.30 h, and blood was drawn at least bi-hourly over 24 h. Participants did not lose body weight over 12 weeks, but improved body composition and exercise capacity. Exercise training resulted in reduced 24-h plasma glucose levels, but did not modify free fatty acid and triacylglycerol levels. Diurnal variation of muscle clock gene expression was modified by exercise training with period genes showing an interaction (time × exercise) effect and reduced mRNA levels at 13.00 h. Exercise training increased mitochondrial respiration without inducing diurnal variation. Twenty-four-hour substrate metabolism and energy expenditure remained unchanged. Future studies should investigate alternative exercise strategies or types of interventions (e.g. diet or drugs aiming at improving insulin sensitivity) for their capacity to reinforce diurnal variation in substrate metabolism and mitochondrial respiration. KEY POINTS: Insulin resistance is associated with blunted 24-h flexibility in whole-body substrate metabolism and skeletal muscle mitochondrial respiration, and disruptions in the skeletal muscle molecular circadian clock. We hypothesized that exercise training modifies 24-h rhythmicity in whole-body substrate metabolism and diurnal variation in skeletal muscle molecular clock and mitochondrial respiration in men with insulin resistance. We found that metabolic inflexibility over 24 h persisted after exercise training, whereas mitochondrial respiration increased independent of time of day. Gene expression of Per1-3 and Rorα in skeletal muscle changed particularly close to the time of day at which exercise training was performed. These results provide the rationale to further investigate the differential metabolic impact of differently timed exercise to treat metabolic defects of insulin resistance that manifest at a particular time of day.

摘要

全身代谢物、骨骼肌时钟基因表达和线粒体呼吸的 24 小时节律性在胰岛素抵抗时受到损害。运动训练已知可以改善胰岛素抵抗,我们的目标是测试运动训练是否可以增强胰岛素抵抗男性的全身和骨骼肌代谢的昼夜变化。在一项单臂纵向设计中,10 名超重和肥胖的胰岛素抵抗男性在下午(14.00 至 18.00 小时)反复进行高强度间歇训练,并在运动训练前和后进行测试,同时在代谢研究单位中进行 2 天的自由生活条件下,定期进食。在第二天,08.00、13.00、18.00、23.00 和 04.00 小时进行间接测热法,08.30、13.30 和 23.30 小时从股外侧肌取肌肉活检,至少每两小时抽取 24 小时的血液。参与者在 12 周内没有减轻体重,但改善了身体成分和运动能力。运动训练导致 24 小时血浆葡萄糖水平降低,但并未改变游离脂肪酸和三酰甘油水平。肌肉时钟基因表达的昼夜变化受运动训练调节,周期基因表现出时间×运动的相互作用效应,并在 13.00 小时降低 mRNA 水平。运动训练增加了线粒体呼吸,但没有诱导昼夜变化。24 小时底物代谢和能量消耗保持不变。未来的研究应探讨替代运动策略或干预类型(例如旨在提高胰岛素敏感性的饮食或药物)改善底物代谢和线粒体呼吸的昼夜变化的能力。关键点:胰岛素抵抗与全身底物代谢和骨骼肌线粒体呼吸的 24 小时灵活性受损以及骨骼肌分子生物钟的破坏有关。我们假设运动训练会改变胰岛素抵抗男性的全身底物代谢的 24 小时节律性和骨骼肌分子时钟和线粒体呼吸的昼夜变化。我们发现,运动训练后 24 小时的代谢灵活性仍然存在,而线粒体呼吸则独立于一天中的时间增加。骨骼肌中 Per1-3 和 Rorα 的基因表达在接近运动训练时间时变化特别明显。这些结果为进一步研究不同时间运动的不同代谢影响提供了依据,以治疗在特定时间出现的胰岛素抵抗的代谢缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f9a/11607886/279210a36d1b/TJP-602-6417-g007.jpg

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