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Whole-organism screening for gluconeogenesis identifies activators of fasting metabolism

机译:糖异生的全生物筛查可确定空腹代谢的激活因子

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摘要

Improving the control of energy homeostasis can lower cardiovascular risk in metabolically compromised individuals. To identify new regulators of whole-body energy control, we conducted a high-throughput screen in transgenic reporter zebrafish for small molecules that modulate the expression of the fasting-inducible gluconeogenic gene pck1. We show that this in vivo strategy identified several drugs that affect gluconeogenesis in humans as well as metabolically uncharacterized compounds. Most notably, we find that the translocator protein ligands PK 11195 and Ro5-4864 are glucose-lowering agents despite a strong inductive effect on pck1 expression. We show that these drugs are activators of a fasting-like energy state and, notably, that they protect high-fat diet-induced obese mice from hepatosteatosis and glucose intolerance, two pathological manifestations of metabolic dysregulation. Thus, using a whole-organism screening strategy, this study has identified new small-molecule activators of fasting metabolism.
机译:改善能量稳态的控制可以降低代谢受损个体的心血管风险。为了确定全身能量控制的新调节剂,我们在转基因记者斑马鱼中进行了高通量筛选,以筛选可调节禁食诱导的糖异生基因pck1表达的小分子。我们表明,这种体内策略确定了几种影响人糖异生的药物以及新陈代谢未表征的化合物。最值得注意的是,我们发现易位蛋白配体PK 11195和Ro5-4864是降糖剂,尽管对pck1表达具有很强的诱导作用。我们表明,这些药物是一种类似禁食的能量状态的激活剂,尤其是它们可以保护高脂饮食诱导的肥胖小鼠免受肝脂肪变性和葡萄糖不耐症(代谢异常的两种病理表现)的侵害。因此,本研究使用全生物筛选策略,确定了新的空腹代谢小分子激活剂。

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