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A metabolic switch regulates the transition between growth and diapause in C. elegans

机译:代谢交换机调节C.秀丽隐杆线的生长和延展之间的过渡

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BACKGROUND:Metabolic activity alternates between high and low states during different stages of an organism's life cycle. During the transition from growth to quiescence, a major metabolic shift often occurs from oxidative phosphorylation to glycolysis and gluconeogenesis. We use the entry of Caenorhabditis elegans into the dauer larval stage, a developmentally arrested stage formed in response to harsh environmental conditions, as a model to study the global metabolic changes and underlying molecular mechanisms associated with growth to quiescence transition.RESULTS:Here, we show that the metabolic switch involves the concerted activity of several regulatory pathways. Whereas the steroid hormone receptor DAF-12 controls dauer morphogenesis, the insulin pathway maintains low energy expenditure through DAF-16/FoxO, which also requires AAK-2/AMPKα. DAF-12 and AAK-2 separately promote a shift in the molar ratios between competing enzymes at two key branch points within the central carbon metabolic pathway diverting carbon atoms from the TCA cycle and directing them to gluconeogenesis. When both AAK-2 and DAF-12 are suppressed, the TCA cycle is active and the developmental arrest is bypassed.CONCLUSIONS:The metabolic status of each developmental stage is defined by stoichiometric ratios within the constellation of metabolic enzymes driving metabolic flux and controls the transition between growth and quiescence.
机译:背景:在有机体生命周期的不同阶段期间,代谢活性在高低状态之间交替。在从生长到静脉的转变期间,通常从氧化磷酸化到糖醇分解和葡糖生成中发生重大代谢转变。我们使用Caenorhabditis elefans的进入Dauer Larval阶段,成为响应恶劣环境条件的发育逮捕阶段,作为研究全球代谢变化和与生长相关的潜在分子机制的模型。结果:在这里,我们表明代谢交换机涉及若干调节途径的协调活动。虽然类固醇激素受体DAF-12对照DAUER形态发生,但胰岛素途径通过DAF-16 / FOXO保持低能量消耗,这也需要AAK-2 /AMPKα。 DAF-12和AAK-2分别促进竞争酶在中央碳代谢途径中的两个关键分支点之间的摩尔比的变化,从TCA循环转移碳原子并将它们引导至葡糖生成。当AAK-2和DAF-12都被抑制时,TCA周期是有效的,并且绕过发育停止。结论:每个发育阶段的代谢状态由代谢酶的星座内的组化学计量比率驾驶代谢通量并控制生长和静止之间的过渡。

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