Magel2是一种Prader-Willi综合征候选基因,可调节培养细胞中昼夜节律蛋白的活动。

Q2 Biochemistry, Genetics and Molecular Biology
Julia Devos, Sara V Weselake, Rachel Wevrick
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引用次数: 22

摘要

背景:Magel2基因在下丘脑视交叉上核中表达最多,其表达周期与时钟控制基因的昼夜节律模式相当。缺乏Magel2基因的小鼠有下丘脑功能障碍,包括昼夜节律缺陷,包括总活动减少和碎片化,主观白天活动过度,但它们有正常的昼夜节律周期。Magel2是MAGE蛋白家族的一员,在细胞功能中具有多种作用,但Magel2的具体功能尚不清楚。方法:我们使用多种基于细胞的测定来确定Magel2是否改变核心昼夜节律蛋白的特性。结果:在per2 -荧光素酶检测中,Magel2抑制Clock:Bmal1异源二聚体的活性。在共转染的细胞中,通过共免疫沉淀测量Magel2与Bmal1和Per2相互作用,并在免疫荧光可视化时显示出与这些相互作用一致的亚细胞分布。此外,Magel2诱导Clock的亚细胞定位向细胞质重新分布,这与Bmal1对Clock亚细胞定位的细胞核定向作用形成对比。结论:与在Magel2缺失小鼠中观察到的昼夜节律钝化一致,这些数据表明Magel2通常通过与关键核心昼夜节律蛋白的相互作用促进细胞昼夜节律周期的负反馈调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Magel2, a Prader-Willi syndrome candidate gene, modulates the activities of circadian rhythm proteins in cultured cells.

Magel2, a Prader-Willi syndrome candidate gene, modulates the activities of circadian rhythm proteins in cultured cells.

Magel2, a Prader-Willi syndrome candidate gene, modulates the activities of circadian rhythm proteins in cultured cells.

Magel2, a Prader-Willi syndrome candidate gene, modulates the activities of circadian rhythm proteins in cultured cells.

Background: The Magel2 gene is most highly expressed in the suprachiasmatic nucleus of the hypothalamus, where its expression cycles in a circadian pattern comparable to that of clock-controlled genes. Mice lacking the Magel2 gene have hypothalamic dysfunction, including circadian defects that include reduced and fragmented total activity, excessive activity during the subjective day, but they have a normal circadian period. Magel2 is a member of the MAGE family of proteins that have various roles in cellular function, but the specific function of Magel2 is unknown.

Methods: We used a variety of cell-based assays to determine whether Magel2 modifies the properties of core circadian rhythm proteins.

Results: Magel2 represses the activity of the Clock:Bmal1 heterodimer in a Per2-luciferase assay. Magel2 interacts with Bmal1 and with Per2 as measured by co-immunoprecipitation in co-transfected cells, and exhibits a subcellular distribution consistent with these interactions when visualized by immunofluorescence. As well, Magel2 induces the redistribution of the subcellular localization of Clock towards the cytoplasm, in contrast to the nucleus-directed effect of Bmal1 on Clock subcellular localization.

Conclusion: Consistent with the blunted circadian rhythm observed in Magel2-null mice, these data suggest that Magel2 normally promotes negative feedback regulation of the cellular circadian cycle, through interactions with key core circadian rhythm proteins.

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来源期刊
Journal of Circadian Rhythms
Journal of Circadian Rhythms Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
7.10
自引率
0.00%
发文量
0
审稿时长
12 weeks
期刊介绍: Journal of Circadian Rhythms is an Open Access, peer-reviewed online journal that publishes research articles dealing with circadian and nycthemeral (daily) rhythms in living organisms, including processes associated with photoperiodism and daily torpor. Journal of Circadian Rhythms aims to include both basic and applied research at any level of biological organization (molecular, cellular, organic, organismal, and populational). Studies of daily rhythms in environmental factors that directly affect circadian rhythms are also pertinent to the journal"s mission.
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