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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Activity and circadian rhythm influence synaptic Shank3 protein levels in mice
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Activity and circadian rhythm influence synaptic Shank3 protein levels in mice

机译:活动和昼夜节律影响小鼠突触Shank3蛋白水平

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Various recent studies revealed that the proteins of the Shank family act as major scaffold organizing elements in the post-synaptic density of excitatory synapses and that their expression level is able to influence synapse formation, maturation and ultimately brain plasticity. An imbalance in Shank3 protein levels has been associated with a variety of neuropsychological and neurodegenerative disorders including autism spectrum disorders and Phelan-McDermid syndrome. Given that sleep disorders and low melatonin levels are frequently observed in autism spectrum disorders, and that circadian rhythms may be able to modulate Shank3 signaling and thereby synaptic function, here, we performed invivo studies on CBA mice using protein biochemistry to investigate the synaptic expression levels of Shank3 during the day in different brain regions. Our results show that synaptic Shank3 protein concentrations exhibit minor oscillations during the day in hippocampal and striatal brain regions that correlate with changes in serum melatonin levels. Furthermore, as circadian rhythms are tightly connected to activity levels in mice, we increased physical activity using running wheels. The expression of Shank3 increases rapidly by induced activity in thalamus and cortex, but decreases in striatum, superimposing the circadian rhythms of different brain regions. We conclude that synaptic Shank3 proteins build highly dynamic platforms that are modulated by the light:dark cycles but even more so driven by activity.
机译:最近的各种研究表明,Shank家族的蛋白质在兴奋性突触的突触后密度中起主要的支架组织元素的作用,其表达水平能够影响突触的形成,成熟并最终影响大脑的可塑性。 Shank3蛋白水平的失衡与多种神经心理学和神经退行性疾病有关,包括自闭症谱系障碍和Phelan-McDermid综合征。鉴于自闭症谱系障碍中经常观察到睡眠障碍和褪黑激素水平低下,并且昼夜节律可能能够调节Shank3信号传导并进而调节突触功能,在这里,我们对CBA小鼠进行了体内研究,使用蛋白质生物化学研究突触表达水平不同大脑区域白天Shank3的分布。我们的结果表明,突触的Shank3蛋白浓度在白天在海马和纹状体脑区域中表现出较小的振荡,这与血清褪黑激素水平的变化相关。此外,由于昼夜节律与小鼠的活动水平紧密相关,因此我们可以使用滚轮来增加体力活动。 Shank3的表达由于丘脑和皮层的诱导活性而迅速增加,但纹状体中的表达减少,从而叠加了不同大脑区域的昼夜节律。我们得出的结论是,突触的Shank3蛋白构建了高度动态的平台,该平台受明暗循环的调节,但受活动驱动的平台更是如此。

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