Diurnal variation in skeletal muscle mitochondrial function dictates time of day-dependent differences in exercise capacity

Subhash Khatri, Souparno Das, Anshit Singh, Shabbir Ahmed, Mohit Kashiv, Sunil Laxman, Ullas Kolthur-Seetharam
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Abstract

Exercise impinges on almost all physiological processes at an organismal level and is a potent intervention to treat various diseases. Exercise performance is well established to display diurnal rhythm, peaking during the late active phase. However, the underlying molecular/metabolic factors and mitochondrial energetics that possibly dictate time-of-day exercise capacity remain unknown. Here, we have unraveled the importance of diurnal variation in mitochondrial functions as a determinant of skeletal muscle exercise performance. Our results show that exercise-induced muscle metabolome and energetics are distinct at ZT3 and ZT15. Importantly, we have elucidated key diurnal differences in mitochondrial functions that are well correlated with disparate time-of-day dependent exercise capacity. Providing causal evidence, we illustrate that loss of Sirtuin4 (SIRT4), a well-known mitochondrial regulator, abrogates diurnal variation in mitochondrial functions and consequently abolishes time-of-day dependent exercise performance. Therefore, our findings unequivocally demonstrate the pivotal role of baseline skeletal-muscle mitochondrial functions in dictating diurnal exercise capacity.
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骨骼肌线粒体功能的昼夜变化决定了运动能力在一天中不同时间的差异
运动对机体几乎所有的生理过程都有影响,是治疗各种疾病的有效干预手段。运动表现显示出昼夜节律,并在活动后期达到峰值,这一点已得到公认。然而,可能决定日间运动能力的潜在分子/代谢因素和线粒体能量学仍然未知。在这里,我们揭示了线粒体功能昼夜变化作为骨骼肌运动能力决定因素的重要性。我们的研究结果表明,运动诱导的肌肉代谢组和能量在 ZT3 和 ZT15 时是不同的。重要的是,我们阐明了线粒体功能的关键昼夜差异,这些差异与不同时间的运动能力密切相关。我们提供了因果证据,说明了 Sirtuin4(SIRT4)--一种著名的线粒体调节因子--的缺失会导致线粒体功能的昼夜变化消失,从而影响与时间相关的运动能力。因此,我们的研究结果明确表明,骨骼肌线粒体功能基线在决定昼夜运动能力方面起着关键作用。
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