首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Calcium-permeable α-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid Receptors Trigger Neuronal Nitric-oxide Synthase Activation to Promote Nerve Cell Death in an Src Kinase-dependent Fashion
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Calcium-permeable α-Amino-3-hydroxy-5-methyl-4-isoxazolepropionic Acid Receptors Trigger Neuronal Nitric-oxide Synthase Activation to Promote Nerve Cell Death in an Src Kinase-dependent Fashion

机译:钙可渗透的α-氨基-3-羟基-5-甲基-4-异恶唑丙酸受体触发神经元一氧化氮合酶激活以促进神经细胞死亡的Src激酶依赖性方式。

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摘要

In the retina information decoding is dependent on excitatory neurotransmission and is critically modulated by AMPA glutamate receptors. The Src-tyrosine kinase has been implicated in modulating neurotransmission in CNS. Thus, our main goal was to correlate AMPA-mediated excitatory neurotransmission with the modulation of Src activity in retinal neurons. Cultured retinal cells were used to access the effects of AMPA stimulation on nitric oxide (NO) production and Src phosphorylation. 4-Amino-5-methylamino-2′,7′-difluorofluorescein diacetate fluorescence mainly determined NO production, and immunocytochemistry and Western blotting evaluated Src activation. AMPA receptors activation rapidly up-regulated Src phosphorylation at tyrosine 416 (stimulatory site) and down-regulated phosphotyrosine 527 (inhibitory site) in retinal cells, an effect mainly mediated by calcium-permeable AMPA receptors. Interestingly, experiments confirmed that neuronal NOS was activated in response to calcium-permeable AMPA receptor stimulation. Moreover, data suggest NO pathway as a key regulatory signaling in AMPA-induced Src activation in neurons but not in glial cells. The NO donor SNAP (S-nitroso-N-acetyl-dl-penicillamine) and a soluble guanylyl cyclase agonist (YC-1) mimicked AMPA effect in Src Tyr-416 phosphorylation, reinforcing that Src activation is indeed modulated by the NO pathway. Gain and loss-of-function data demonstrated that ERK is a downstream target of AMPA-induced Src activation and NO signaling. Furthermore, AMPA stimulated NO production in organotypic retinal cultures and increased Src activity in the in vivo retina. Additionally, AMPA-induced apoptotic retinal cell death was regulated by both NOS and Src activity. Because Src activity is pivotal in several CNS regions, the data presented herein highlight that Src modulation is a critical step in excitatory retinal cell death.
机译:在视网膜中,信息解码取决于兴奋性神经传递,并受到AMPA谷氨酸受体的严格调节。 Src酪氨酸激酶已参与调节中枢神经系统的神经传递。因此,我们的主要目标是使AMPA介导的兴奋性神经传递与视网膜神经元Src活性的调节相关。培养的视网膜细胞用于获得AMPA刺激对一氧化氮(NO)产生和Src磷酸化的影响。 4-Amino-5-methylamino-2',7'-difluorofluorescein diacetate荧光主要确定NO的产生,免疫细胞化学和Western印迹法评估Src的活化。 AMPA受体在视网膜细胞中的酪氨酸416(刺激位点)和磷酸酪氨酸527(抑制位点)处的Src磷酸化迅速上调,这种作用主要由钙可渗透的AMPA受体介导。有趣的是,实验证实神经元NOS响应钙可渗透的AMPA受体刺激而被激活。此外,数据表明NO途径是神经元而非神经胶质细胞中AMPA诱导的Src激活的关键调控信号。 NO供体SNAP(S-亚硝基-N-乙酰基-dl-青霉胺)和可溶性鸟苷基环化酶激动剂(YC-1)模仿了Src Tyr-416磷酸化中的AMPA效应,从而增强了Src的活化确实是由NO途径调节的。增益和功能丧失数据表明ERK是AMPA诱导的Src激活和NO信号传导的下游目标。此外,AMPA刺激了器官型视网膜培养物中NO的产生,并提高了体内视网膜中Src的活性。此外,AMPS诱导的凋亡性视网膜细胞死亡受到NOS和Src活性的调节。由于Src活性在几个CNS区域至关重要,因此本文提供的数据突出表明Src调节是兴奋性视网膜细胞死亡的关键步骤。

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