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Ras Activity Tunes the Period and Modulates the Entrainment of the Suprachiasmatic Clock

机译:Ras活动调节周期并调节超视交叉钟的夹带

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摘要

The small GTPase Ras is a universal eukaryotic cytoplasmic membrane-anchored protein, which regulates diverse downstream signal transduction pathways that play an important role in the proper functioning of neurons. Ras activity is a central regulator of structural and functional synaptic plasticity in the adult nervous system, where it channels neuronal responses to various extracellular cues allowing the organism to adapt to complex environmental stimuli. The suprachiasmatic nucleus (SCN) is the principle pacemaker of the circadian clock, and the circadian and photic regulation of Ras activity in the SCN is an important modulator of the clockwork. We have generated transgenic mouse expressing constitutively active V12-H-Ras selectively in neurons via a synapsin I promoter (synRas mice), which serves as a suitable model to study the role of neuronal Ras signaling. Modulation of Ras activity affects ERK1,2/CREB signaling and glycogen synthase kinase-3 beta expression in the SCN, which in turn modify the photoentrainment of the clock and the fine tuning the circadian period length. The main focus of this review is to offer an overview of the function of Ras signaling in the circadian rhythm and its potential role in learning and memory consolidation.
机译:小GTPase Ras是一种通用的真核细胞质膜锚定蛋白,可调节多种下游信号转导途径,这些通路在神经元的正常功能中起重要作用。 Ras活性是成人神经系统中结构和功能性突触可塑性的主要调节器,在其中它引导神经元对各种细胞外信号的反应,使生物体适应复杂的环境刺激。视交叉上核(SCN)是生物钟的主要起搏器,而SCN中Ras活性的生物钟和光调节是钟表的重要调节器。我们已经产生了通过突触素I启动子在神经元中选择性表达组成型活性V12-H-Ras的转基因小鼠(synRas小鼠),它是研究神经元Ras信号传导作用的合适模型。 Ras活性的调节会影响SCN中ERK1,2 / CREB信号传导和糖原合酶激酶3β的表达,进而改变时钟的光夹带并精细调整昼夜节律周期的长度。本综述的主要重点是概述Ras信号在昼夜节律中的功能及其在学习和记忆巩固中的潜在作用。

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