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活性氧与凋亡性小脑颗粒神经元的离子流和体积减少有关:NOX 酶的作用。

Reactive oxygen species are related to ionic fluxes and volume decrease in apoptotic cerebellar granule neurons: role of NOX enzymes.

机构信息

División de Neurociencias, Departamento de Neurodesarrollo y Fisiología, Universidad Nacional Autónoma de México, México, DF, México.

出版信息

J Neurochem. 2011 May;117(4):654-64. doi: 10.1111/j.1471-4159.2011.07231.x. Epub 2011 Apr 6.

Abstract

Reactive oxygen species (ROS) are produced early during apoptosis of cerebellar granule neurons induced by low potassium (K5) and staurosporine (Sts). In addition, K5 and Sts activate NADPH oxidases (NOX). Recently, we described that K5 and Sts induce apoptotic volume decrease (AVD) at a time when ROS generation and NOX activity occur. In the present study, we evaluated the relationship between ROS generation and ionic fluxes during AVD. Here, we showed that K5- and Sts-induced AVD was inhibited by antioxidants and that direct ROS production induced AVD. Moreover, NOX inhibitors eliminated AVD induced by both K5 and Sts. Sts, but not K5, failed to induce AVD in cerebellar granule neurons from NOX2 knockout mice. These findings suggest that K5- and Sts-induced AVD is largely mediated by ROS produced by NOX. On the other hand, we also found that the blockage of ionic fluxes involved in AVD inhibited both ROS generation and NOX activity. These findings suggest that ROS generation and NOX activity are involved in ionic fluxes activation, which in turn could maintain ROS generation by activating NOX, leading to a self-amplifying cycle.

摘要

活性氧 (ROS) 在低钾 (K5) 和星形孢菌素 (Sts) 诱导的小脑颗粒神经元凋亡早期产生。此外,K5 和 Sts 激活 NADPH 氧化酶 (NOX)。最近,我们描述了 K5 和 Sts 在 ROS 生成和 NOX 活性发生的同时诱导凋亡性体积减少 (AVD)。在本研究中,我们评估了 AVD 期间 ROS 生成和离子通量之间的关系。结果表明,抗氧化剂抑制 K5 和 Sts 诱导的 AVD,并且直接 ROS 生成诱导 AVD。此外,NOX 抑制剂消除了 K5 和 Sts 诱导的 AVD。Sts 但不是 K5 未能诱导来自 NOX2 敲除小鼠的小脑颗粒神经元的 AVD。这些发现表明 K5 和 Sts 诱导的 AVD 主要由 NOX 产生的 ROS 介导。另一方面,我们还发现参与 AVD 的离子通量的阻断抑制了 ROS 生成和 NOX 活性。这些发现表明 ROS 生成和 NOX 活性参与离子通量的激活,这反过来又可以通过激活 NOX 来维持 ROS 生成,从而导致自我放大循环。

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