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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Activation of GABA receptors attenuates neuronal apoptosis through inhibiting the tyrosine phosphorylation of NR2A by Src after cerebral ischemia and reperfusion.
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Activation of GABA receptors attenuates neuronal apoptosis through inhibiting the tyrosine phosphorylation of NR2A by Src after cerebral ischemia and reperfusion.

机译:GABA受体的激活通过抑制脑缺血和再灌注后Src引起的NR2A酪氨酸磷酸化来减弱神经元凋亡。

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Cerebral ischemia can induce both the increase of excitation and the decrease of inhibition, which leads to neuronal excitotoxicity. Since glutamatergic and GABAergic transmissions work by each counterbalancing the function of the other, enhancing GABAergic activity should balance excessive glutamatergic excitation. But the potential mechanisms underlying these effects are obscure. Here, we used two GABA agonists, muscimol and baclofen, and performed immunoblotting, immunoprecipitation and histology analysis to evaluate the neuroprotective effects by stimulating GABA receptors in rat four-vessel occlusion (4-VO) ischemic model, and to investigate the potential mechanism. Our results indicate that whether in global cerebral ischemia in vivo, or in oxygen glucose deprivation (OGD) in vitro, coapplication of muscimol with baclofen can protect neurons from neuronal death through down-regulating the function of N-methyl-d-aspartic acid (NMDA) receptors via attenuating the tyrosine phosphorylation of NR2A subunit. We further elucidate that the phosphorylation level of Src kinase and the interaction among Src, post-synaptic density protein 95 and NR2A were also suppressed by coapplication of muscimol with baclofen. Both MK-801, a specific antagonist of NMDA receptors, and chelerythrine, an inhibitor of protein kinase C (PKC), could down-regulate the phosphorylation of NR2A via inhibiting the activation of Src and PKC respectively. These results suggest that the modified pattern of dynamic balance between excitation and inhibition by coactivation of the GABA receptors in cerebral ischemia can attenuate the excitatory NMDAR via inhibiting a novel postsynaptic NMDAR/Src-mediated signal amplification, the 'NMDAR-Ca(2+) --> PKC --> Src --> NMDAR-Ca(2+)' cycle.
机译:脑缺血可以诱导兴奋性增加和抑制性降低,从而导致神经元兴奋性毒性。由于谷氨酸能和GABA能的传递是通过彼此抵消彼此的功能而起作用的,因此增强GABA能的活性应平衡过量的谷氨酸能的激发。但是,这些作用的潜在机制尚不清楚。在这里,我们使用了两种GABA激动剂,muscimol和baclofen,并进行了免疫印迹,免疫沉淀和组织学分析,通过刺激大鼠四血管阻塞(4-VO)缺血模型中的GABA受体来评估神经保护作用,并研究其潜在机制。我们的研究结果表明,无论是在体内全球脑缺血中,还是在体外氧葡萄糖剥夺(OGD)中,将muscimol与baclofen并用可以通过下调N-甲基-d-天冬氨酸的功能来保护神经元免受神经元死亡( NMDA)受体通过减弱NR2A亚基的酪氨酸磷酸化作用。我们进一步阐明,麝香酚和巴氯芬合用时,也会抑制Src激酶的磷酸化水平以及Src,突触后密度蛋白95和NR2A之间的相互作用。 NMDA受体的特异性拮抗剂MK-801和蛋白激酶C(PKC)抑制剂白屈菜红碱都可以分别通过抑制Src和PKC的激活来下调NR2A的磷酸化。这些结果表明,通过在脑缺血中共激活GABA受体来激活和抑制动平衡之间的动态平衡模式,可以通过抑制新型突触后NMDAR / Src介导的信号放大'NMDAR-Ca(2+)来减弱兴奋性NMDAR。 -> PKC-> Src-> NMDAR-Ca(2+)'周期。

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