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Ubb 多泛素基因缺失导致小鼠代谢和睡眠异常。

Loss of polyubiquitin gene Ubb leads to metabolic and sleep abnormalities in mice.

机构信息

Department of Life Science, University of Seoul, Seoul, Korea.

出版信息

Neuropathol Appl Neurobiol. 2010 Jun;36(4):285-99. doi: 10.1111/j.1365-2990.2009.01057.x. Epub 2009 Dec 8.

Abstract

AIMS

Ubiquitin performs essential roles in a myriad of signalling pathways required for cellular function and survival. Recently, we reported that disruption of the stress-inducible ubiquitin-encoding gene Ubb reduces ubiquitin content in the hypothalamus and leads to adult-onset obesity coupled with a loss of arcuate nucleus neurones and disrupted energy homeostasis in mice. Neuropeptides expressed in the hypothalamus control both metabolic and sleep behaviours. In order to demonstrate that the loss of Ubb results in broad hypothalamic abnormalities, we attempted to determine whether metabolic and sleep behaviours were altered in Ubb knockout mice.

METHODS

Metabolic rate and energy expenditure were measured in a metabolic chamber, and sleep stage was monitored via electroencephalographic/electromyographic recording. The presence of neurodegeneration and increased reactive gliosis in the hypothalamus were also evaluated.

RESULTS

We found that Ubb disruption leads to early-onset reduced activity and metabolic rate. Additionally, we have demonstrated that sleep behaviour is altered and sleep homeostasis is disrupted in Ubb knockout mice. These early metabolic and sleep abnormalities are accompanied by persistent reactive gliosis and the loss of arcuate nucleus neurones, but are independent of neurodegeneration in the lateral hypothalamus.

CONCLUSIONS

Ubb knockout mice exhibit phenotypes consistent with hypothalamic dysfunction. Our data also indicate that Ubb is essential for the maintenance of the ubiquitin levels required for proper regulation of metabolic and sleep behaviours in mice.

摘要

目的

泛素在细胞功能和存活所需的众多信号通路中发挥着重要作用。最近,我们报道称,应激诱导的泛素编码基因 Ubb 的破坏会减少下丘脑的泛素含量,导致成年期肥胖,伴随着弓状核神经元的丧失和能量平衡的破坏。在下丘脑中表达的神经肽控制着代谢和睡眠行为。为了证明 Ubb 的缺失会导致广泛的下丘脑异常,我们试图确定 Ubb 敲除小鼠的代谢和睡眠行为是否发生改变。

方法

在代谢室中测量代谢率和能量消耗,并通过脑电图/肌电图记录监测睡眠阶段。还评估了下丘脑是否存在神经退行性变和反应性神经胶质增生增加。

结果

我们发现 Ubb 缺失会导致早期活动和代谢率降低。此外,我们还证明了 Ubb 敲除小鼠的睡眠行为发生改变,睡眠稳态受到破坏。这些早期的代谢和睡眠异常伴随着持续的反应性神经胶质增生和弓状核神经元的丧失,但与外侧下丘脑的神经退行性变无关。

结论

Ubb 敲除小鼠表现出与下丘脑功能障碍一致的表型。我们的数据还表明,Ubb 对于维持代谢和睡眠行为的适当调节所需的泛素水平是必需的。

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