内分泌学
内科学
下丘脑
ATF4
胰岛素抵抗
生物
能量稳态
福克斯O1
脂肪变性
化学
医学
胰岛素
信号转导
肥胖
细胞生物学
蛋白激酶B
淋巴瘤
切碎
作者
Jiali Deng,Feixiang Yuan,Yajie Guo,Yuzhong Xiao,Yuguo Niu,Yalan Deng,Xiao Han,Youfei Guan,Shanghai Chen,Feifan Guo
出处
期刊:Diabetes
[American Diabetes Association]
日期:2016-12-19
卷期号:66 (3): 640-650
被引量:41
摘要
Although many functions of activating transcription factor 4 (ATF4) are identified, a role of ATF4 in the hypothalamus in regulating energy homeostasis is unknown. Here, we generated adult-onset agouti-related peptide neuron–specific ATF4 knockout (AgRP-ATF4 KO) mice and found that these mice were lean, with improved insulin and leptin sensitivity and decreased hepatic lipid accumulation. Furthermore, AgRP-ATF4 KO mice showed reduced food intake and increased energy expenditure, mainly because of enhanced thermogenesis in brown adipose tissue. Moreover, AgRP-ATF4 KO mice were resistant to high-fat diet–induced obesity, insulin resistance, and liver steatosis and maintained at a higher body temperature under cold stress. Interestingly, the expression of FOXO1 was directly regulated by ATF4 via binding to the cAMP-responsive element site on its promoter in hypothalamic GT1-7 cells. Finally, Foxo1 expression was reduced in the arcuate nucleus (ARC) of the hypothalamus of AgRP-ATF4 KO mice, and adenovirus-mediated overexpression of FOXO1 in ARC increased the fat mass in AgRP-ATF4 KO mice. Collectively, our data demonstrate a novel function of ATF4 in AgRP neurons of the hypothalamus in energy balance and lipid metabolism and suggest hypothalamic ATF4 as a potential drug target for treating obesity and its related metabolic disorders.
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