KATP通道功能对物理应激下线粒体生物能量学至关重要

O. Akopova, I. Mankovska, V. Nosar, L. Kolchinskaya, V. Sagach
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摘要

已知mKATP通道活性的调节对生物体的能量代谢有很大的影响。本研究的目的是研究mKATP通道开放对强制负重游泳大鼠身体耐力的影响。我们的目的是通过研究mKATP通道打开对线粒体功能的直接影响,寻找运动训练下能量代谢调节的机制基础。雄性Wistar大鼠对生理应激的抵抗力分别为高、低两组,进行负重游泳训练。从开始监测游泳时间(ST),直到达到疲劳状态,大鼠开始画画。高耐药组的ST较高,这与较高的内源性mKATP通道活性相吻合。与此不同的是,mKATP通道阻滞剂格列本脲和5-羟癸酸酯在体内完全阻断了mKATP通道,并显著降低了两组的ST,这表明其依赖于mKATP通道活性。为了找到观察到的依赖性的机制基础,我们在体外研究了mKATP通道打开对线粒体功能的影响。mKATP通道开启剂二氮氧化物刺激状态4呼吸,降低RCR,但提高磷酸化效率(P/O)。相反,mKATP通道阻滞剂,显著降低P/O。通过实验,我们得出了体力耐力与P/O比的相关性,两者都依赖于mKATP通道的活性。因此,mKATP通道的打开抑制了磷酸化,但提高了其效率,从而减少了ATP合成的能量消耗。在体内,这导致mKATP通道活性升高的动物的耐力得到改善。讨论了观察到的现象的可能机制和生理相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
KATP Channels Functioning is Critical for Mitochondrial Bioenergetics under Physical Stress
The modulation of mKATP channel activity is known to have a great impact on energy metabolism in a living organism. The aim of this work was to study the impact of mKATP channels opening on the physical endurance in the rats subject to compulsory swimming with a load. Our purpose was to find a mechanistic basis to explain the modulation of the energy metabolism under exercise training by studying the direct effect of mKATP channel opening on mitochondrial functions. Male Wistar rats exhibiting high and low resistance to physical stress were separated in two groups, and subjected to compulsory swimming with a load. Swimming time (ST) was monitored from the start till the fatigue was reached, and the rats began to drawn. ST was reliably higher in high resistance group, which coincided with higher endogenous mKATP channels activity. Unlike this, mKATP channels blockers, glibenclamide and 5-hydroxydecanoate completely blocked mKATP channel in vivo and dramatically reduced ST in both groups, which indicated its dependence on mKATP channel activity. To find a mechanistic basis for the observed dependence, we studied the effect of mKATP channels opening on mitochondrial functions in vitro. mKATP channels opener diazoxide stimulated state 4 respiration and decreased RCR, but increased phosphorylation efficiency (P/O). On the contrary, mKATP channels blockers, dramatically reduced P/O. Based on the experiments, we came to the conclusion of the correlation between the physical endurance and P/O ratio, both dependent on mKATP channels activity. Thus, mKATP channels opening inhibited phosphorylation, but increased its efficiency, which reduced energy expense for ATP synthesis. In vivo this resulted in the improvement of the endurance in the animals with elevated mKATP channel activity. Possible mechanisms and physiological relevance of the observed phenomena are discussed.
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