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首页> 外文期刊>Nature Communications >The mitochondrial uniporter controls fight or flight heart rate increases
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The mitochondrial uniporter controls fight or flight heart rate increases

机译:线粒体单向转运蛋白控制搏斗或飞行心率增加

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摘要

Heart rate increases are a fundamental adaptation to physiological stress, while inappropriate heart rate increases are resistant to current therapies. However, the metabolic mechanisms driving heart rate acceleration in cardiac pacemaker cells remain incompletely understood. The mitochondrial calcium uniporter ( MCU ) facilitates calcium entry into the mitochondrial matrix to stimulate metabolism. We developed mice with myocardial MCU inhibition by transgenic expression of a dominant-negative (DN) MCU . Here, we show that DN- MCU mice had normal resting heart rates but were incapable of physiological fight or flight heart rate acceleration. We found that MCU function was essential for rapidly increasing mitochondrial calcium in pacemaker cells and that MCU -enhanced oxidative phoshorylation was required to accelerate reloading of an intracellular calcium compartment before each heartbeat. Our findings show that MCU is necessary for complete physiological heart rate acceleration and suggest that MCU inhibition could reduce inappropriate heart rate increases without affecting resting heart rate.
机译:心率增加是对生理压力的基本适应,而不适当的心率增加则对当前的疗法有抵抗力。但是,驱动心脏起搏器细胞中心率加速的代谢机制仍未完全了解。线粒体钙单向转运蛋白(MCU)促进钙进入线粒体基质以刺激新陈代谢。我们开发了通过显性负(DN)MCU的转基因表达来抑制心肌MCU的小鼠。在这里,我们显示DN-MCU小鼠的静息心率正常,但无法进行生理搏斗或飞行心率加速。我们发现,MCU功能对于在起搏器细胞中快速增加线粒体钙至关重要,并且在每次心跳之前都需要MCU增强的氧化磷酸化来加速细胞内钙区室的重载。我们的发现表明,MCU对于完整的生理性心率加速是必要的,并且表明,MCU抑制可以减少不适当的心率增加而不会影响静息心率。

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