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Mice Lacking the Circadian Modulators SHARP1 and SHARP2 Display Altered Sleep and Mixed State Endophenotypes of Psychiatric Disorders

机译:缺乏昼夜节律调节器的小鼠显示改变的睡眠和精神疾病的混合状态内表型。

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摘要

Increasing evidence suggests that clock genes may be implicated in a spectrum of psychiatric diseases, including sleep and mood related disorders as well as schizophrenia. The bHLH transcription factors SHARP1/DEC2/BHLHE41 and SHARP2/DEC1/BHLHE40 are modulators of the circadian system and SHARP1/DEC2/BHLHE40 has been shown to regulate homeostatic sleep drive in humans. In this study, we characterized Sharp1 and Sharp2 double mutant mice (S1/2-/-) using online EEG recordings in living animals, behavioral assays and global gene expression profiling. EEG recordings revealed attenuated sleep/wake amplitudes and alterations of theta oscillations. Increased sleep in the dark phase is paralleled by reduced voluntary activity and cortical gene expression signatures reveal associations with psychiatric diseases. S1/2-/- mice display alterations in novelty induced activity, anxiety and curiosity. Moreover, mutant mice exhibit impaired working memory and deficits in prepulse inhibition resembling symptoms of psychiatric diseases. Network modeling indicates a connection between neural plasticity and clock genes, particularly for SHARP1 and PER1. Our findings support the hypothesis that abnormal sleep and certain (endo)phenotypes of psychiatric diseases may be caused by common mechanisms involving components of the molecular clock including SHARP1 and SHARP2.
机译:越来越多的证据表明,时钟基因可能与多种精神疾病有关,包括与睡眠和情绪相关的疾病以及精神分裂症。 bHLH转录因子SHARP1 / DEC2 / BHLHE41和SHARP2 / DEC1 / BHLHE40是昼夜节律系统的调节剂,并且SHARP1 / DEC2 / BHLHE40已被证明可以调节人体的稳态睡眠驱动力。在这项研究中,我们使用活体动物的在线脑电图记录,行为分析和整体基因表达谱,对Sharp1和Sharp2双突变小鼠(S1 / 2 -/-)进行了特征分析。脑电图记录显示减弱的睡眠/苏醒幅度和θ振荡的变化。在黑暗期增加睡眠的同时,自愿活动减少,皮层基因表达特征揭示出与精神疾病的关系。 S1 / 2 -/-小鼠在新奇诱导的活动,焦虑和好奇心方面表现出变化。此外,突变小鼠表现出受损的工作记忆和类似于精神病症状的前冲抑制缺陷。网络建模表明,神经可塑性和时钟基因之间存在联系,特别是对于SHARP1和PER1。我们的发现支持这样的假设,即异常睡眠和某些精神疾病的(内)表型可能是由涉及分子时钟组件(包括SHARP1和SHARP2)的常见机制引起的。

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