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Hedgehog partial agonism drives warburg-like metabolism in muscle and brown fat

机译:刺猬部分激动作用推动肌肉和褐色脂肪中的Warburg样代谢

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Diabetes, obesity, and cancer affect upward of 15% of the world's population. Interestingly, all three diseases juxtapose dysregulated intracellular signaling with altered metabolic state. Exactly which genetic factors define stable metabolic set points in vivo remains poorly understood. Here, we show that hedgehog signaling rewires cellular metabolism. We identify a cilium-dependent Smo-Ca ~(2+)-Ampk axis that triggers rapid Warburg-like metabolic reprogramming within minutes of activation and is required for proper metabolic selectivity and flexibility. We show that Smo modulators can uncouple the Smo-Ampk axis from canonical signaling and identify cyclopamine as one of a new class of "selective partial agonists," capable of concomitant inhibition of canonical and activation of noncanonical hedgehog signaling. Intriguingly, activation of the Smo-Ampk axis in vivo drives robust insulin-independent glucose uptake in muscle and brown adipose tissue. These data identify multiple noncanonical endpoints that are pivotal for rational design of hedgehog modulators and provide a new therapeutic avenue for obesity and diabetes.
机译:糖尿病,肥胖和癌症影响了世界人口的15%以上。有趣的是,所有这三种疾病并发地改变了细胞内信号传导并改变了代谢状态。究竟哪种遗传因素定义了体内稳定的代谢设定点,仍然知之甚少。在这里,我们显示了刺猬信号重塑细胞代谢。我们确定了依赖纤毛的Smo-Ca〜(2 +)-Ampk轴,该轴在激活后几分钟内触发快速的Warburg样代谢重编程,并且对于适当的代谢选择性和灵活性是必需的。我们显示,Smo调节剂可以将Smo-Ampk轴与经典信号解偶联,并将环巴胺鉴定为一类新的“选择性部分激动剂”,能够同时抑制经典和激活非经典刺猬信号。有趣的是,体内Smo-Ampk轴的激活驱动了肌肉和棕色脂肪组织中强大的胰岛素非依赖性葡萄糖摄取。这些数据确定了多个非规范的端点,这些端点对于刺猬调节剂的合理设计至关重要,并为肥胖和糖尿病提供了新的治疗途径。

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