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Glucosylceramide synthase in the fat body controls energy metabolism in Drosophila

机译:脂肪体内的葡萄糖基神经酰胺合酶控制果蝇的能量代谢

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摘要

Glucosylceramide synthase (GlcT-1) catalyzes the synthesis of glucosylceramide (GlcCer), the core structure of major glycosphingolipids (GSLs). Obesity is a metabolic disorder caused by an imbalance between energy uptake and expenditure, resulting in excess stored body fat. Recent studies have shown that GSL levels are increased in obese rodents and that pharmacologically reducing GSL levels by inhibiting GlcCer synthesis improves adipocyte function. However, the molecular mechanism underlying these processes is still not clearly understood. Using Drosophila as a model animal, we report that GlcT-1 expression in the fat body, which is equivalent to mammalian adipose tissue, regulates energy metabolism. Overexpression of GlcT-1 increases stored nutrition (triacylglycerol and carbohydrate) levels. Conversely, reduced expression of GlcT-1 in the fat body causes a reduction of fat storage. This regulation occurs, at least in part, through the activation of p38-ATF2 signaling. Furthermore, we found that GlcCer is the sole GSL of the fat body, indicating that regulation of GlcCer synthesis by GlcT-1 in the fat body is responsible for regulating energy homeostasis. Both GlcT-1 and p38-ATF2 signaling are evolutionarily conserved, leading us to propose an evolutionary perspective in which GlcT-1 appears to be one of the key factors that control fat metabolism.
机译:葡萄糖基神经酰胺合酶(GlcT-1)催化葡萄糖基神经酰胺(GlcCer)的合成,这是主要糖鞘脂(GSL)的核心结构。肥胖是由能量摄取和消耗之间的不平衡导致的代谢紊乱,导致体内多余的脂肪存储。最近的研究表明,肥胖啮齿动物的GSL水平升高,并且通过抑制GlcCer的合成在药理上降低GSL水平可以改善脂肪细胞的功能。但是,仍不清楚这些过程的分子机制。使用果蝇作为模型动物,我们报告说,GlcT-1在脂肪体内的表达与哺乳动物的脂肪组织相当,可调节能量代谢。 GlcT-1的过表达增加了储存的营养(三酰甘油和碳水化合物)水平。相反,GlcT-1在脂肪体内的表达减少会导致脂肪储存减少。该调节至少部分地通过激活p38-ATF2信号发生。此外,我们发现GlcCer是脂肪体的唯一GSL,这表明脂肪体内GlcT-1对GlcCer合成的调节是调节能量稳态的原因。 GlcT-1和p38-ATF2信号在进化上都是保守的,这使我们提出了一种进化观点,其中GlcT-1似乎是控制脂肪代谢的关键因素之一。

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