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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Neural stem/progenitor cells display a low requirement for oxidative metabolism independent of hypoxia inducible factor-1alpha expression
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Neural stem/progenitor cells display a low requirement for oxidative metabolism independent of hypoxia inducible factor-1alpha expression

机译:神经干/祖细胞对氧化代谢的需求低,而与缺氧诱导因子-1α表达无关

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Neural stem/progenitor cells (NSPCs) are multipotent cells within the embryonic and adult brain that give rise to both neuronal and glial cell lineages. Maintenance of NSPC multipotency is promoted by low oxygen tension, although the metabolic underpinnings of this trait have not been described. In this study, we investigated the metabolic state of undifferentiated NSPCs in culture, and tested their relative reliance on oxidative versus glycolytic metabolism for survival, as well as their dependence on hypoxia inducible factor-1alpha (HIF-1α) expression for maintenance of metabolic phenotype. Unlike primary neurons, NSPCs from embryonic and adult mice survived prolonged hypoxia in culture. In addition, NSPCs displayed greater susceptibility to glycolytic inhibition compared with primary neurons, even in the presence of alternative mitochondrial TCA substrates. NSPCs were also more resistant than neurons to mitochondrial cyanide toxicity, less capable of utilizing galactose as an alternative substrate to glucose, and more susceptible to pharmacological inhibition of the pentose phosphate pathway by 6-aminonicotinamide. Inducible deletion of exon 1 of the Hif1a gene improved the ability of NSPCs to utilize pyruvate during glycolytic inhibition, but did not alter other parameters of metabolism, including their ability to withstand prolonged hypoxia. Taken together, these data indicate that NSPCs have a relatively low requirement for oxidative metabolism for their survival and that hypoxic resistance is not dependent upon HIF-1α signaling. Neural stem/progenitor cells (NSPCs) preferentially rely on glycolysis and the pentose phosphate pathway (PPP) for survival, and maintain a low requirement for mitochondrial oxidative phosphorylation. Glycolytic dependence under aerobic conditions has been linked to HIF-1α in certain cancer cell types; however, inducible gene deletion of Hif1a did not shift metabolic phenotype or render cultured murine NSPCs susceptible to hypoxia.
机译:神经干/祖细胞(NSPC)是胚胎和成年大脑中的多能细胞,可同时产生神经元和神经胶质细胞谱系。低氧张力促进了NSPC多能性的维持,尽管尚未描述该特征的代谢基础。在这项研究中,我们调查了文化中未分化的NSPC的代谢状态,并测试了它们相对依赖于氧化代谢与糖酵解代谢来维持生存,以及依赖于低氧诱导因子-1α(HIF-1α)表达来维持代谢表型。 。与原代神经元不同,来自胚胎和成年小鼠的NSPCs在长期缺氧条件下都能存活。此外,与初级神经元相比,即使存在其他线粒体TCA底物,NSPCs对糖酵解抑制的敏感性也更高。与线粒体氰化物毒性相比,NSPCs对神经元的抵抗力也更高,利用半乳糖作为葡萄糖的替代底物的能力更弱,并且更易受到6-氨基烟酰胺对戊糖磷酸途径的药理抑制作用。 Hif1a基因外显子1的诱导性缺失提高了NSPC在糖酵解抑制过程中利用丙酮酸的能力,但并未改变其他代谢参数,包括它们承受长时间缺氧的能力。综上所述,这些数据表明,NSPCs对于其生存对氧化代谢的需求相对较低,并且耐缺氧性不依赖于HIF-1α信号传导。神经干/祖细胞(NSPC)优先依靠糖酵解和戊糖磷酸途径(PPP)生存,并维持对线粒体氧化磷酸化的低要求。在某些癌细胞类型中,有氧条件下的糖酵解依赖性已与HIF-1α相关。然而,Hif1a的诱导型基因缺失并没有改变代谢表型或使培养的鼠科NSPC容易缺氧。

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