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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The role of NADPH oxidase, neuronal nitric oxide synthase and poly(ADP ribose) polymerase in oxidative neuronal death induced in cortical cultures by brain-derived neurotrophic factor and neurotrophin-4/5.
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The role of NADPH oxidase, neuronal nitric oxide synthase and poly(ADP ribose) polymerase in oxidative neuronal death induced in cortical cultures by brain-derived neurotrophic factor and neurotrophin-4/5.

机译:NADPH氧化酶,神经元一氧化氮合酶和聚ADP核糖聚合酶在脑源性神经营养因子和Neurotrophin-4 / 5诱导的皮质培养物中氧化性神经元死亡中的作用。

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摘要

Certain neurotrophins promote or induce oxidative neuronal death in cortical cultures. However, the effector mechanisms mediating this phenomenon have not been delineated. In this study, we investigated the possibility that NADPH oxidase and nitric oxide synthase (NOS) function as such effectors. Western blot analysis showed that treatment with brain-derived neurotrophic factor (BDNF) and neurotrophin (NT)-4/5 increased the levels of NADPH oxidase subunits. Moreover, neurotrophin treatment resulted in membrane translocation of p67phox, a characteristic feature of NADPH oxidase activation. Administration of the specific NADPH oxidase inhibitor, 4-(2-aminoethyl)benzenesulfonylfluoride (AEBSF), attenuated increases in oxygen free radicals thereby suggesting that NADPH oxidase contributes to the oxidative stress induced by neurotrophins. Furthermore, neuronal death induced by BDNF or NT-4/5 was significantly attenuated by AEBSF. Treatment with BDNF has previously been shown to induce neuronal NOS (nNOS). Our data indicated that inhibitors of nNOS attenuated neuronal death induced by BDNF or NT-4/5, consistent with an active role of nNOS in the mediation of neurotrophin neurotoxicity. As in other models of oxidative cell death, BDNF-induced neuronal death was accompanied by poly(ADP ribose) polymerase (PARP) activation. AEBSF or N-nitro-l-arginine (NNA) reduced BDNF-mediated PARP activation. PARP and poly(ADP ribose) glycohydrolase (PARG) are actively involved in mediating neurotrophin neurotoxicity since inhibitors of PARP and PARG significantly reduced levels of cell death. These results suggest that NADPH oxidase and nNOS contribute to increased oxidative stress, subsequent activation of PARP/PARG, and neuronal death induced by prolonged neurotrophin exposure.
机译:某些神经营养蛋白在皮质培养物中促进或诱导氧化性神经元死亡。但是,尚未描述介导此现象的效应器机制。在这项研究中,我们调查了NADPH氧化酶和一氧化氮合酶(NOS)充当此类效应子的可能性。蛋白质印迹分析表明,脑源性神经营养因子(BDNF)和神经营养蛋白(NT)-4/5的治疗可增加NADPH氧化酶亚基的水平。此外,神经营养蛋白治疗导致p67phox膜移位,这是NADPH氧化酶激活的特征。特定的NADPH氧化酶抑制剂4-(2-氨基乙基)苯磺酰氟(AEBSF)的给药减弱了氧自由基的增加,因此表明NADPH氧化酶有助于神经营养蛋白诱导的氧化应激。此外,由BDNF或NT-4 / 5诱导的神经元死亡被AEBSF显着减弱。先前已证明用BDNF治疗可诱导神经元NOS(nNOS)。我们的数据表明,nNOS抑制剂可减轻BDNF或NT-4 / 5诱导的神经元死亡,这与nNOS在介导神经营养蛋白神经毒性中的积极作用相一致。与其他氧化细胞死亡模型一样,BDNF诱导的神经元死亡伴随有聚ADP核糖聚合酶(PARP)活化。 AEBSF或N-硝基-1-精氨酸(NNA)减少了BDNF介导的PARP活化。 PARP和聚(ADP核糖)糖水解酶(PARG)积极参与介导神经营养蛋白的神经毒性,因为PARP和PARG的抑制剂可显着降低细胞死亡水平。这些结果表明,NADPH氧化酶和nNOS会导致氧化应激增加,PARP / PARG的后续活化以及长时间暴露于神经营养蛋白引起的神经元死亡。

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