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Cooperative roles of the suprachiasmatic nucleus central clock and the adrenal clock in controlling circadian glucocorticoid rhythm

机译:基于氧化性糖皮质激素节奏控制昼夜节律的基于核心核和肾上时钟的合作作用

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The mammalian circadian timing system consists of the central clock in the hypothalamic suprachiasmatic nucleus (SCN) and subsidiary peripheral clocks in other tissues. Glucocorticoids (GCs) are adrenal steroid hormones with widespread physiological effects that undergo daily oscillations. We previously demonstrated that the adrenal peripheral clock plays a pivotal role in circadian GC rhythm by driving cyclic GC biosynthesis. Here, we show that the daily rhythm in circulating GC levels is controlled by bimodal actions of central and adrenal clockwork. When mice were subjected to daytime restricted feeding to uncouple central and peripheral rhythms, adrenal GC contents and steroidogenic acute regulatory protein expression peaked around zeitgeber time 00 (ZT00), consistent with shifted adrenal clock gene expression. However, restricted feeding produced two distinct peaks in plasma GC levels: one related to adrenal GC content and the other around ZT12, which required an intact SCN. Light pulse-evoked activation of the SCN increased circulating GC levels in both wild-type and adrenal clock-disrupted mutant mice without marked induction of GC biosynthesis. In conclusion, we demonstrate that adrenal clock-dependent steroidogenesis and a SCN-driven central mechanism regulating GC release cooperate to produce daily circulatory GC rhythm.
机译:哺乳动物昼夜时序系统由下丘脑的核心核(SCN)中的中心时钟和其他组织中的辅助外围钟表组成。糖皮质激素(GCS)是肾上腺类固醇激素,具有广泛的生理效果,其经过日常振荡。我们之前证明肾上腺外围时钟通过驾驶循环GC生物合成来在昼夜节律中发挥枢轴作用。在这里,我们表明,循环GC水平的日常节律是由中央和肾上发条的双峰动作控制。当小鼠进行日间时间限制饲喂的喂养,肾上腺GC含量和诸如Ztegers时间00(ZT00)周围达到尖峰的肾上腺GC含量和甾体急性调节蛋白表达,与移位的肾上时钟基因表达一致。然而,受限制的喂养在血浆GC水平中产生了两个不同的峰:与肾上腺GC含量和ZT12周围的另一个有关,这需要完整的SCN。 SCN的光脉冲诱发活化在野生型和肾上时钟破坏的突变小鼠中增加了循环的GC水平,而不明显诱导GC生物合成。总之,我们证明肾上时钟依赖性甾体化和调节GC释放的SCN驱动的中央机制配合生产日常循环GC节律。

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