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Neuropeptide Signaling Differentially Affects Phase Maintenance and Rhythm Generation in SCN and Extra-SCN Circadian Oscillators

机译:神经肽信号传导差异影响SCN和Extra-SCN昼夜节律振荡器的相位维持和节律产生。

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摘要

Circadian rhythms in physiology and behavior are coordinated by the brain's dominant circadian pacemaker located in the suprachiasmatic nuclei (SCN) of the hypothalamus. Vasoactive intestinal polypeptide (VIP) and its receptor, VPAC2, play important roles in the functioning of the SCN pacemaker. Mice lacking VPAC2 receptors (Vipr2−/−) express disrupted behavioral and metabolic rhythms and show altered SCN neuronal activity and clock gene expression. Within the brain, the SCN is not the only site containing endogenous circadian oscillators, nor is it the only site of VPAC2 receptor expression; both VPAC2 receptors and rhythmic clock gene/protein expression have been noted in the arcuate (Arc) and dorsomedial (DMH) nuclei of the mediobasal hypothalamus, and in the pituitary gland. The functional role of VPAC2 receptors in rhythm generation and maintenance in these tissues is, however, unknown. We used wild type (WT) and Vipr2−/− mice expressing a luciferase reporter (PER2::LUC) to investigate whether circadian rhythms in the clock gene protein PER2 in these extra-SCN tissues were compromised by the absence of the VPAC2 receptor. Vipr2−/− SCN cultures expressed significantly lower amplitude PER2::LUC oscillations than WT SCN. Surprisingly, in Vipr2−/− Arc/ME/PT complex (Arc, median eminence and pars tuberalis), DMH and pituitary, the period, amplitude and rate of damping of rhythms were not significantly different to WT. Intriguingly, while we found WT SCN and Arc/ME/PT tissues to maintain a consistent circadian phase when cultured, the phase of corresponding Vipr2−/− cultures was reset by cull/culture procedure. These data demonstrate that while the main rhythm parameters of extra-SCN circadian oscillations are maintained in Vipr2−/− mice, the ability of these oscillators to resist phase shifts is compromised. These deficiencies may contribute towards the aberrant behavior and metabolism associated with Vipr2−/− animals. Further, our data indicate a link between circadian rhythm strength and the ability of tissues to resist circadian phase resetting.
机译:生理和行为的昼夜节律由位于下丘脑上交叉眼上核(SCN)的大脑主导的昼夜节律起搏器协调。血管活性肠多肽(VIP)及其受体VPAC2在SCN起搏器的功能中起重要作用。缺乏VPAC2受体(Vipr2-/-)的小鼠表现出行为和代谢节律紊乱,并显示出SCN神经元活性和时钟基因表达改变。在大脑中,SCN不是唯一包含内源性昼夜节律振荡器的位点,也不是VPAC2受体表达的唯一位点。 VPAC2受体和节律性时钟基因/蛋白质的表达已在下丘脑下丘脑的弓状(Arc)和背体(DMH)核以及垂体中被注意到。然而,尚不清楚VPAC2受体在这些组织的节律产生和维持中的功能作用。我们使用表达荧光素酶报道基因(PER2 :: LUC)的野生型(WT)和Vipr2-/-小鼠调查了这些SCN外组织中时钟基因蛋白PER2中的昼夜节律是否因缺少VPAC2受体而受到损害。 Vipr2-/-SCN培养物表达的幅度PER2 :: LUC振荡明显低于WT SCN。出人意料的是,在Vipr2-/-Arc / ME / PT复合体(弧,中位隆起和结节),DMH和垂体中,节律的周期,振幅和衰减率与WT并无显着差异。有趣的是,虽然我们发现WT SCN和Arc / ME / PT组织在培养时可以维持一致的昼夜节律,但相应的Vipr2-/-培养物的相却通过剔除/培养程序重置。这些数据表明,在Vipr2-/-小鼠中维持了额外SCN昼夜节律振荡的主要节奏参数时,这些振荡器抵抗相移的能力受到了损害。这些缺陷可能会导致与Vipr2-/-动物相关的异常行为和新陈代谢。此外,我们的数据表明昼夜节律强度与组织抵抗昼夜相变的能力之间存在联系。

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