首页> 外文期刊>Journal of Cell Science >Kidins220/ARMS downregulation by excitotoxic activation of NMDARs reveals its involvement in neuronal survival and death pathways
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Kidins220/ARMS downregulation by excitotoxic activation of NMDARs reveals its involvement in neuronal survival and death pathways

机译:Kidins220 / ARMS被NMDAR的兴奋性毒性激活下调揭示了它参与神经元存活和死亡途径

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Functional and protein interactions between the iV-methyl-D-aspartate type of glutamate receptor (NMDAR) and neurotrophin or ephrin receptors play essential roles in neuronal survival and differentiation. A shared downstream effector for neurotrophin- and ephrin-receptor signaling is kinase D-interacting substrate of 220 kDa (Kidins220), also known as ankyrin repeat-rich membrane spanning (ARMS). Because this molecule is obligatory for neurotrophin-induced differentiation, we investigated whether Kidins220/ARMS and NMDAR functions were related. Here, we identify an association between these proteins and discover that excitotoxicity, a specific form of neuronal death induced by NMDAR overstimulation, dramatically decreases Kidins220/ARMS levels in cortical neurons and in a model of cerebral ischemia. Kidins220/ARMS downregulation is triggered by overactivation of NMDARs containing NR2B subunits and subsequent Ca~(2+) influx, andinvolves a dual mechanism: rapid cleavage by the Ca~(2+)-dependent protease calpain and calpain-independent silencing of Kidins220/Arms gene transcription. Additionally, Kidins220/ ARMS knockdown decreases ERK activation and basal neuronal viability, and enhances neuronal death under excitotoxic conditions. Our results demonstrate Kidins220/ ARMS participation in neuronal life and death pathways, and constitute the first report of its regulation under pathological conditions.
机译:iV-甲基-D-天冬氨酸类型的谷氨酸受体(NMDAR)与神经营养蛋白或ephrin受体之间的功能和蛋白质相互作用在神经元存活和分化中起重要作用。神经营养蛋白和ephrin受体信号传递的共同下游效应物是220 kDa的激酶D相互作用底物(Kidins220),也称为锚蛋白重复富集膜跨膜(ARMS)。因为该分子对于神经营养蛋白诱导的分化是必不可少的,所以我们研究了Kidins220 / ARMS和NMDAR功能是否相关。在这里,我们确定了这些蛋白质之间的关联,并发现兴奋性毒性(一种由NMDAR过度刺激引起的神经元死亡的特定形式)显着降低了皮质神经元和脑缺血模型中的Kidins220 / ARMS水平。 Kidins220 / ARMS下调是由含有NR2B亚基的NMDAR的过度激活和随后的Ca〜(2+)流入触发的,并且涉及双重机制:Ca〜(2+)依赖性蛋白酶钙蛋白酶的快速裂解和与钙蛋白酶无关的Kidins220 /的沉默。武器基因转录。此外,Kidins220 / ARMS组合件可降低ERK活化和基底神经元活力,并在兴奋性毒性条件下增加神经元死亡。我们的结果证明Kidins220 / ARMS参与神经元的生与死通路,并且是病理条件下对其调节的第一份报告。

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