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下丘脑能量感知神经元对体重减轻反应的细胞类型特异性转录组学

Cell type-specific transcriptomics of hypothalamic energy-sensing neuron responses to weight-loss.

作者信息

Henry Fredrick E, Sugino Ken, Tozer Adam, Branco Tiago, Sternson Scott M

机构信息

Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, United States.

Division of Neurobiology, Medical Research Council Laboratory of Molecular Biology, Cambridge, United Kingdom.

出版信息

Elife. 2015 Sep 2;4:e09800. doi: 10.7554/eLife.09800.

Abstract

Molecular and cellular processes in neurons are critical for sensing and responding to energy deficit states, such as during weight-loss. Agouti related protein (AGRP)-expressing neurons are a key hypothalamic population that is activated during energy deficit and increases appetite and weight-gain. Cell type-specific transcriptomics can be used to identify pathways that counteract weight-loss, and here we report high-quality gene expression profiles of AGRP neurons from well-fed and food-deprived young adult mice. For comparison, we also analyzed Proopiomelanocortin (POMC)-expressing neurons, an intermingled population that suppresses appetite and body weight. We find that AGRP neurons are considerably more sensitive to energy deficit than POMC neurons. Furthermore, we identify cell type-specific pathways involving endoplasmic reticulum-stress, circadian signaling, ion channels, neuropeptides, and receptors. Combined with methods to validate and manipulate these pathways, this resource greatly expands molecular insight into neuronal regulation of body weight, and may be useful for devising therapeutic strategies for obesity and eating disorders.

摘要

神经元中的分子和细胞过程对于感知能量不足状态并做出反应至关重要,比如在减肥期间。表达刺鼠相关蛋白(AGRP)的神经元是下丘脑的关键细胞群,在能量不足时被激活,会增加食欲和体重。细胞类型特异性转录组学可用于识别对抗体重减轻的途径,在此我们报告了来自营养良好和食物匮乏的年轻成年小鼠的AGRP神经元的高质量基因表达谱。为了进行比较,我们还分析了表达阿黑皮素原(POMC)的神经元,这是一个混合的细胞群,会抑制食欲和体重。我们发现AGRP神经元比POMC神经元对能量不足更为敏感。此外,我们识别出了涉及内质网应激、昼夜节律信号、离子通道、神经肽和受体的细胞类型特异性途径。结合验证和操纵这些途径的方法,这一资源极大地扩展了对体重神经元调节的分子认识,可能有助于设计肥胖症和饮食失调的治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82cd/4595745/e2b5f7a9d1a8/elife09800f001.jpg

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