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Circadian rhythm disruption in a mouse model of Rett syndrome circadian disruption in RTT

机译:RTT Rett综合征昼夜节律小鼠模型中的昼夜节律紊乱

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Disturbances in the sleep/wake cycle are prevalent in patients with Rett syndrome (RU). We sought to determine whether the circadian system is disrupted in a WIT model, Mecp2(-/y) mice. We found that MeCP2 mutants showed decreased strength and precision of daily rhythms of activity coupled with extremely fragmented sleep. The central circadian clock (suprachiasmatic nucleus) exhibited significant reduction in the number of neurons expressing vasoactive intestinal peptide (VIP) as well as compromised spontaneous neural activity. The molecular clockwork was disrupted both centrally in the SCN and in peripheral organs, indicating a general disorganization of the circadian system. Disruption of the molecular clockwork was observed in fibroblasts of RTT patients. Finally, MeCP2 mutant mice were vulnerable to circadian disruption as chronic jet lag accelerated mortality. Our finds suggest an integral role of MeCP2 in the circadian timing system and provides a possible mechanistic explanation for the sleep/wake distrubances observed in KIT patients. The work raises the possibility that RU patients may benefit from a temporally structured environment. (C) 2015 Elsevier Inc. All rights reserved.
机译:Rett综合征(RU)患者普遍存在睡眠/唤醒周期障碍。我们试图确定昼夜节律系统是否在WIT模型Mecp2(-/ y)小鼠中被破坏。我们发现MeCP2突变体显示强度下降和日常活动节奏的精确度降低,加上睡眠极为分散。中央昼夜节律钟(视交叉上核)表现出表达血管活性肠肽(VIP)的神经元数量显着减少以及自发神经活动受到损害。分子发条在SCN和周围器官中都受到破坏,表明昼夜节律系统普遍混乱。在RTT患者的成纤维细胞中观察到了分子发条的破坏。最后,由于慢性时差加速死亡率,MeCP2突变小鼠易受昼夜节律破坏。我们的发现表明,MeCP2在昼夜节律系统中起着不可或缺的作用,并为在KIT患者中观察到的睡眠/苏醒干扰提供了可能的机理解释。这项工作增加了RU患者可能受益于时间结构性环境的可能性。 (C)2015 Elsevier Inc.保留所有权利。

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