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Rhythmic potassium transport regulates the circadian clock in human red blood cells

机译:节律性钾转运调节人红细胞中的生物钟

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Circadian rhythms organize many aspects of cell biology and physiology to a daily temporal program that depends on clock gene expression cycles in most mammalian cell types. However, circadian rhythms are also observed in isolated mammalian red blood cells (RBCs), which lack nuclei, suggesting the existence of post-translational cellular clock mechanisms in these cells. Here we show using electrophysiological and pharmacological approaches that human RBCs display circadian regulation of membrane conductance and cytoplasmic conductivity that depends on the cycling of cytoplasmic K+ levels. Using pharmacological intervention and ion replacement, we show that inhibition of K+ transport abolishes RBC electrophysiological rhythms. Our results suggest that in the absence of conventional transcription cycles, RBCs maintain a circadian rhythm in membrane electrophysiology through dynamic regulation of K+ transport.
机译:昼夜节律将细胞生物学和生理学的许多方面组织到每天的时间程序中,该程序取决于大多数哺乳动物细胞类型中的时钟基因表达周期。但是,在缺乏核的分离的哺乳动物红细胞(RBC)中也观察到了昼夜节律,这表明这些细胞中存在翻译后细胞时钟机制。在这里,我们使用电生理学和药理学方法表明,人类红细胞显示出对膜电导和细胞质电导率的昼夜节律调节,这取决于细胞质K +水平的循环。使用药理学干预和离子替代,我们显示出抑制K +转运消除了RBC电生理节律。我们的结果表明,在没有常规转录循环的情况下,RBC通过动态调节K +转运来维持膜电生理的昼夜节律。

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