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首页> 外文期刊>Molecular Neurobiology >The Early Activation of PI3K Strongly Enhances the Resistance of Cortical Neurons to Hypoxic Injury via the Activation of Downstream Targets of the PI3K Pathway and the Normalization of the Levels of PARP Activity, ATP, and NAD~+
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The Early Activation of PI3K Strongly Enhances the Resistance of Cortical Neurons to Hypoxic Injury via the Activation of Downstream Targets of the PI3K Pathway and the Normalization of the Levels of PARP Activity, ATP, and NAD~+

机译:PI3K的早期激活通过PI3K途径下游靶标的激活以及PARP活性,ATP和NAD〜+的水平正常化,强烈增强了皮层神经元对缺氧损伤的抵抗力。

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Phosphatidylinositol 3-kinase (PI3K) plays several important roles in neuronal survival. Activation of the pathway is essential for the neuroprotective mechanisms of materials that shield neuronal cells from many stressful conditions. However, there have been no reports to date about the effect of the direct activation of the pathway in hypoxic injury of neuronal cells. We investigated whether the direct activation of the PI3K pathway inhibits neuronal cell death induced by hypoxia. Primary cultured cortical neurons (PCCNs) were exposed to hypoxic conditions (less than 1 mol% O_2) and/or treated with PI3K activator. Hypoxia reduced the viability of PCCNs in a time-dependent manner, but treatment with PI3K significantly restored viability in a concentration-dependent manner. Among the signaling proteins involved in the PI3K pathway, those associated with survival, including Akt and glycogen synthase kinase-3beta, were decreased shortly after exposure to hypoxia and those associated with cell death, including BAX, apoptosis-induced factor, cytochrome c, caspase-9, caspase-3, and poly(ADP-ribose) polymerase (PARP), were increased. However, treatment with PI3K activator normalized the expression levels of those signaling proteins. PARP activity and levels of ATP and NAD+ altered by hypoxia were also normalized with direct PI3K activation. All these findings suggest that direct and early activation is important for protecting neuronal cells from hypoxic injury.
机译:磷脂酰肌醇3-激酶(PI3K)在神经元存活中起着重要作用。该途径的激活对于保护神经元细胞免受许多压力条件影响的物质的神经保护机制至关重要。然而,迄今为止,尚未有关于该途径的直接激活在神经元细胞低氧损伤中的作用的报道。我们调查了PI3K途径的直接激活是否抑制了缺氧诱导的神经元细胞死亡。将原代培养的皮质神经元(PCCN)暴露于低氧条件下(小于1 mol%O_2)和/或用PI3K激活剂处理。缺氧以时间依赖性方式降低了PCCNs的活力,但PI3K的治疗以浓度依赖性方式显着恢复了活力。在参与PI3K途径的信号蛋白中,与存活相关的蛋白(包括Akt和糖原合酶激酶3beta)在暴露于缺氧后不久下降,而与细胞死亡相关的蛋白(包括BAX,凋亡诱导因子,细胞色素c,胱天蛋白酶) -9,caspase-3和聚(ADP-核糖)聚合酶(PARP)增加。但是,用PI3K激活剂处理可以使这些信号蛋白的表达水平正常化。还通过直接PI3K激活将缺氧所改变的PARP活性以及ATP和NAD +的水平标准化。所有这些发现表明直接和早期激活对于保护神经元细胞免受缺氧损伤很重要。

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