Knobloch Marlen, Pilz Gregor-Alexander, Ghesquière Bart, Kovacs Werner J, Wegleiter Thomas, Moore Darcie L, Hruzova Martina, Zamboni Nicola, Carmeliet Peter, Jessberger Sebastian
Laboratory of Neural Plasticity, Faculty of Medicine and Science, Brain Research Institute, University of Zurich, 8057 Zurich, Switzerland.
Laboratory of Neural Plasticity, Faculty of Medicine and Science, Brain Research Institute, University of Zurich, 8057 Zurich, Switzerland.
Cell Rep. 2017 Aug 29;20(9):2144-2155. doi: 10.1016/j.celrep.2017.08.029.
Hippocampal neurogenesis is important for certain forms of cognition, and failing neurogenesis has been implicated in neuropsychiatric diseases. The neurogenic capacity of hippocampal neural stem/progenitor cells (NSPCs) depends on a balance between quiescent and proliferative states. Here, we show that the rate of fatty acid oxidation (FAO) regulates the activity of NSPCs. Quiescent NSPCs show high levels of carnitine palmitoyltransferase 1a (Cpt1a)-dependent FAO, which is downregulated in proliferating NSPCs. Pharmacological inhibition and conditional deletion of Cpt1a in vitro and in vivo leads to altered NSPC behavior, showing that Cpt1a-dependent FAO is required for stem cell maintenance and proper neurogenesis. Strikingly, manipulation of malonyl-CoA, the metabolite that regulates levels of FAO, is sufficient to induce exit from quiescence and to enhance NSPC proliferation. Thus, the data presented here identify a shift in FAO metabolism that governs NSPC behavior and suggest an instructive role for fatty acid metabolism in regulating NSPC activity.
海马体神经发生对某些认知形式很重要,而神经发生功能衰退与神经精神疾病有关。海马体神经干/祖细胞(NSPCs)的神经发生能力取决于静止状态和增殖状态之间的平衡。在此,我们表明脂肪酸氧化(FAO)速率调节NSPCs的活性。静止的NSPCs表现出高水平的肉碱棕榈酰转移酶1a(Cpt1a)依赖性FAO,而在增殖的NSPCs中该酶被下调。在体外和体内对Cpt1a进行药理学抑制和条件性缺失会导致NSPC行为改变,表明Cpt1a依赖性FAO是干细胞维持和正常神经发生所必需的。令人惊讶的是,调控FAO水平的代谢物丙二酰辅酶A的操纵足以诱导细胞从静止状态退出并增强NSPC增殖。因此,此处呈现的数据确定了一种控制NSPC行为的FAO代谢转变,并表明脂肪酸代谢在调节NSPC活性中具有指导作用。