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神经胶质细胞中的淀粉样前体蛋白调节睡眠及参与谷氨酸再循环的基因。

Amyloid Precursor Protein in Glia Regulates Sleep and Genes Involved in Glutamate Recycling.

作者信息

Farca Luna Abud Jose, Perier Magali, Seugnet Laurent

机构信息

WAKING team, Centre de Recherche en Neurosciences de Lyon, Université Claude Bernard Lyon 1, 69373 Lyon Cedex 08, France.

WAKING team, Centre de Recherche en Neurosciences de Lyon, Université Claude Bernard Lyon 1, 69373 Lyon Cedex 08, France

出版信息

J Neurosci. 2017 Apr 19;37(16):4289-4300. doi: 10.1523/JNEUROSCI.2826-16.2017. Epub 2017 Mar 17.

Abstract

Amyloid precursor protein (App) plays a crucial role in Alzheimer's disease via the production and deposition of toxic β-amyloid peptides. App is heavily expressed in neurons, the focus of the vast majority of studies investigating its function. Meanwhile, almost nothing is known about App's function in glia, where it is also expressed, and can potentially participate in the regulation of neuronal physiology. In this report, we investigated whether , the homolog of , could influence sleep-wake regulation when its function is manipulated in glial cells. inhibition in astrocyte-like and cortex glia resulted in higher sleep amounts and longer sleep bout duration during the night, while overexpression had the opposite effect. These sleep phenotypes were not the result of developmental defects, and were correlated with changes in expression in glutamine synthetase (GS) in astrocyte-like glia and in changes in the gap-junction component innexin2 in cortex glia. Downregulating both GS and innexin2, but not either one individually, resulted in higher sleep amounts, similarly to inhibition. Consistent with these results, the expression of GS and innexin2 are increased following sleep deprivation, indicating that GS and innexin2 genes are dynamically linked to vigilance states. Interestingly, the reduction of GS expression and the sleep phenotype observed upon inhibition could be rescued by increasing the expression of the glutamate transporter dEaat1. In contrast, reducing dEaat1 expression severely disrupted sleep. These results associate glutamate recycling, sleep, and a glial function for the App family proteins. The amyloid precursor protein (App) has been intensively studied for its implication in Alzheimer's disease (AD). The attributed functions of App are linked to the physiology and cellular biology of neurons where the protein is predominantly expressed. Consequences on glia in AD are generally thought to be secondary effects of the pathology in neurons. Researchers still do not know whether App plays a role in glia in nonpathological conditions. We report here that glial App plays a role in physiology and in the regulation of sleep/wake, which has been shown recently to be involved in AD pathology. These results also associate glutamate recycling and sleep regulation, adding further complexity to the physiological role of App and to its implication in AD.

摘要

淀粉样前体蛋白(App)通过产生和沉积有毒的β-淀粉样肽在阿尔茨海默病中起关键作用。App在神经元中大量表达,绝大多数研究其功能的研究都聚焦于此。与此同时,对于App在胶质细胞中的功能几乎一无所知,而它在胶质细胞中也有表达,并且可能参与神经元生理功能的调节。在本报告中,我们研究了App的同系物在胶质细胞中功能被操纵时是否会影响睡眠-觉醒调节。在星形胶质样细胞和皮质胶质细胞中抑制App会导致夜间睡眠量增加和睡眠周期持续时间延长,而过表达则产生相反的效果。这些睡眠表型并非发育缺陷的结果,并且与星形胶质样细胞中谷氨酰胺合成酶(GS)的表达变化以及皮质胶质细胞中缝隙连接成分连接蛋白2的变化相关。下调GS和连接蛋白2,但不是单独下调其中一个,会导致睡眠量增加,这与抑制App类似。与这些结果一致,睡眠剥夺后GS和连接蛋白2的表达会增加,表明GS和连接蛋白2基因与警觉状态动态相关。有趣的是,通过增加谷氨酸转运体dEaat1的表达可以挽救抑制App时观察到的GS表达减少和睡眠表型。相反,降低dEaat1的表达会严重扰乱睡眠。这些结果将谷氨酸再循环、睡眠和App家族蛋白的胶质细胞功能联系起来。淀粉样前体蛋白(App)因其与阿尔茨海默病(AD)的关联而受到深入研究。App的既定功能与该蛋白主要表达的神经元的生理学和细胞生物学相关。一般认为AD中胶质细胞的后果是神经元病理学的次要影响。研究人员仍然不知道App在非病理条件下是否在胶质细胞中起作用。我们在此报告,胶质细胞中的App在生理学以及睡眠/觉醒调节中起作用,最近已证明睡眠/觉醒调节与AD病理学有关。这些结果还将谷氨酸再循环与睡眠调节联系起来,进一步增加了App的生理作用及其与AD关联的复杂性。

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