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A Drosophila orphan G protein-coupled receptor BOSS functions as a glucose-responding receptor: Loss of boss causes abnormal energy metabolism

机译:果蝇孤儿G蛋白偶联受体BOSS充当葡萄糖反应受体:失去boss导致异常的能量代谢

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摘要

Glucose, one of the most important nutrients for animals, acts as a regulatory signal that controls the secretion of hormones, such as insulin, by endocrine tissues. However, how organisms respond to extracellular glucose and how glucose controls nutrient homeostasis remain unknown. Here, we show that a putative Drosophila melanogaster G protein-coupled receptor, previously identified as Bride of sevenless (BOSS), responds to extracellular glucose and regulates sugar and lipid metabolism. We found that BOSS was expressed in the fat body, a nutrient-sensing tissue equivalent to mammalian liver and adipose tissues, and in photoreceptor cells. Boss null mutants had small bodies, exhibited abnormal sugar and lipid metabolism (elevated circulating sugar and lipid levels, impaired lipid mobilization to oenocytes), and were sensitive to nutrient deprivation stress. These phenotypes are reminiscent of flies defective in insulin signaling. Consistent with these findings are the observations that boss mutants had reduced PI3K activity and phospho-AKT levels, which indicates that BOSS is required for proper insulin signaling. Because human G protein-coupled receptor 5B and the seven-transmembrane domain of BOSS share the same sequence, our results also have important implications for glucose metabolism in humans. Thus, our study provides insight not only into the basic mechanisms of metabolic regulation but also into the pathobiological basis for diabetes and obesity.
机译:葡萄糖是动物最重要的营养素之一,可作为调节信号,控制内分泌组织分泌激素(如胰岛素)。然而,生物如何对细胞外葡萄糖作出反应以及葡萄糖如何控制营养物稳态仍是未知的。在这里,我们显示了一种推定的果蝇G蛋白偶联受体,以前被鉴定为七人之新娘(BOSS),对细胞外葡萄糖作出反应并调节糖和脂质代谢。我们发现,BOSS在脂肪体(一种等同于哺乳动物肝脏和脂肪组织的营养敏感组织)和感光细胞中表达。 Boss null突变体体小,糖和脂质代谢异常(循环糖和脂质水平升高,脂质迁移至细胞的能力受损),并且对营养缺乏的压力敏感。这些表型使人联想到胰岛素信号传导缺陷的果蝇。与这些发现一致的是,观察到boss突变体降低了PI3K活性和磷酸化AKT水平,这表明BOSS是适当的胰岛素信号传导所必需的。由于人类G蛋白偶联受体5B和BOSS的七跨膜结构域具有相同的序列,因此我们的结果对人类的葡萄糖代谢也具有重要意义。因此,我们的研究不仅对代谢调节的基本机制提供了见识,而且对糖尿病和肥胖症的病理生物学基础也提供了见识。

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