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The histone acetyltransferase MOF activates hypothalamic polysialylation to prevent diet-induced obesity in mice

机译:组蛋白乙酰转移酶MOF激活下丘脑多唾液酸化作用,以防止饮食引起的小鼠肥胖

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Overfeeding causes rapid synaptic remodeling in hypothalamus feeding circuits. Polysialylation of cell surface molecules is a key step in this neuronal rewiring and allows normalization of food intake. Here we examined the role of hypothalamic polysialylation in the long-term maintenance of body weight, and deciphered the molecular sequence underlying its nutritional regulation. We found that upon high fat diet (HFD), reduced hypothalamic polysialylation exacerbated the diet-induced obese phenotype in mice. Upon HFD, the histone acetyltransferase MOF was rapidly recruited on the St8sia4 polysialyltransferase-encoding gene. Mof silencing in the mediobasal hypothalamus of adult mice prevented activation of the St8sia4 gene transcription, reduced polysialylation, altered the acute homeostatic feeding response to HFD and increased the body weight gain. These findings indicate that impaired hypothalamic polysialylation contribute to the development of obesity, and establish a role for MOF in the brain control of energy balance.
机译:过度喂食会导致下丘脑喂食回路中的突触重塑。细胞表面分子的聚唾液酸化是该神经元重新布线的关键步骤,并且可以使食物摄入正常化。在这里,我们检查了下丘脑多唾液酸化在体重的长期维持中的作用,并阐明了其营养调节的分子序列。我们发现高脂饮食(HFD)时,下丘脑多唾液酸化作用降低会加剧饮食引起的小鼠肥胖表型。经HFD检测后,组蛋白乙酰基转移酶MOF迅速募集到St8sia4聚唾液酸转移酶编码基因上。成年小鼠的中下丘脑下的Mof沉默阻止了St8sia4基因转录的激活,减少了多唾液酸化,改变了对HFD的急性稳态喂养反应并增加了体重。这些发现表明,下丘脑多唾液酸化作用减弱有助于肥胖症的发展,并建立MOF在大脑控制能量平衡中的作用。

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