首页> 外文期刊>Cell Communication and Signaling >Connexin30 and Connexin43 show a time-of-day dependent expression in the mouse suprachiasmatic nucleus and modulate rhythmic locomotor activity in the context of chronodisruption
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Connexin30 and Connexin43 show a time-of-day dependent expression in the mouse suprachiasmatic nucleus and modulate rhythmic locomotor activity in the context of chronodisruption

机译:Connexin30和Connexin43显示了小鼠Suprachiasmatic核中的一时间依赖性表达,并在阶段的背景下调节节律运动活性

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The astroglial connexins Cx30 and Cx43 contribute to many important CNS functions including cognitive behaviour, motoric capacity and regulation of the sleep-wake cycle. The sleep wake cycle, is controlled by the circadian system. The central circadian rhythm generator resides in the suprachiasmatic nucleus (SCN). SCN neurons are tightly coupled in order to generate a coherent circadian rhythm. The SCN receives excitatory glutamatergic input from the retina which mediates entrainment of the circadian system to the environmental light-dark cycle. Connexins play an important role in electric coupling of SCN neurons and astrocytic-neuronal signalling that regulates rhythmic SCN neuronal activity. However, little is known about the regulation of Cx30 and Cx43 expression in the SCN, and the role of these connexins in light entrainment of the circadian system and in circadian rhythm generation. We analysed time-of-day dependent as well as circadian expression of Cx30 and Cx43 mRNA and protein in the mouse SCN by means of qPCR and immunohistochemistry. Moreover, we analysed rhythmic spontaneous locomotor activity in mice with a targeted deletion of Cx30 and astrocyte specific deletion of Cx43 (DKO) in different light regimes by means of on-cage infrared detectors. Fluctuation of Cx30 protein expression is strongly dependent on the light-dark cycle whereas fluctuation of Cx43 protein expression persisted in constant darkness. DKO mice entrained to the light-dark cycle. However, re-entrainment after a phase delay was slightly impaired in DKO mice. Surprisingly, DKO mice were more resilient to chronodisruption. Circadian fluctuation of Cx30 and Cx43 protein expression in the SCN is differently regulated. Cx30 and astroglial Cx43 play a role in rhythm stability and re-entrainment under challenging conditions.
机译:星形痛Connexins CX30和CX43有助于许多重要的CNS功能,包括认知行为,电机容量和睡眠唤醒周期的调节。睡眠唤醒循环由昼夜节制系统控制。中央昼夜节律发电机驻留在Suprachiasmatic核(SCN)中。 SCN神经元紧密耦合,以产生连贯的昼夜节律。 SCN接收来自视网膜的兴奋性谷氨酸输入,该输入介导昼夜节律系统夹带到环境光暗循环。 Connexins在SCN神经元和星形胶合神经元信号传导中起重要作用,该信号调节节律SCN神经元活动。然而,关于CX30和CX43在SCN中的调节内容知之甚少,以及这些Connexins在昼夜节律和昼夜节律生成中的角度在光线上的作用。通过QPCR和免疫组化,我们分析了一时间的依赖以及CX30和CX43 mRNA和蛋白质中CX30和CX43 mRNA和蛋白的表达。此外,我们通过在笼式红外探测器中分析了在不同光制度中的CX30和星形胶质细胞特异性缺失的小鼠中的节奏自发运动活性。 CX30蛋白表达的波动强烈依赖于光暗循环,而CX43蛋白表达的波动在恒定的黑暗中持续存在。 DKO小鼠夹带在浅黑循环中。然而,在DKO小鼠中略微受损后重新夹带。令人惊讶的是,DKO小鼠更具弹性速度。 SCN中CX30和CX43蛋白表达的昼夜昼夜昼夜调节。 CX30和Astroglial CX43在节奏稳定性和重新夹具下在挑战条件下发挥作用。

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