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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The transcription factor NF-kappaB mediates increases in calcium currents and decreases in NMDA- and AMPA/kainate-induced currents induced by tumor necrosis factor-alpha in hippocampal neurons.
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The transcription factor NF-kappaB mediates increases in calcium currents and decreases in NMDA- and AMPA/kainate-induced currents induced by tumor necrosis factor-alpha in hippocampal neurons.

机译:转录因子NF-κB介导海马神经元中肿瘤坏死因子-α诱导的钙电流增加,而NMDA和AMPA /海因酸盐诱导的电流减少。

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摘要

Tumor necrosis factor-alpha (TNF alpha) is a cytokine rapidly produced in the brain in response to vigorous neuronal activity and tissue injury. TNF alpha may protect neurons against excitotoxic and oxidative insults by a mechanism involving activation of the transcription factor NF-kappaB. Whole-cell perforated patch clamp recordings in cultured rat hippocampal neurons showed that long-term treatment (24-48 h) with TNF alpha increases Ca2+ current density; pharmacological analysis indicated a major increase in current through L-type voltage-dependent calcium channels. Long-term treatment with TNF alpha caused a decrease in currents induced by glutamate, NMDA, AMPA, and kainate. Shorter exposures to TNF alpha (acute; 2 h) did not alter Ca2+ current or glutamate receptor agonist-induced currents. Ceramide, an intracellular messenger that activates the transcription factor NF-kappaB, mimicked the actions of TNFs on Ca2+ current density and currents induced by glutamate receptor agonists. Cotreatment with kappaB decoy DNA abolished the effects of TNF alpha on Ca2+ current and excitatory amino acid-induced currents, demonstrating a requirement for NF-kappaB activation in the actions of TNF alpha. Neurons pretreated with TNF alpha exhibited increased intracellular Ca2+ concentrations following membrane depolarization but reduced intracellular Ca2+ concentration responses to excitatory amino acids, compared with neurons in untreated control cultures or cultures cotreated with kappaB decoy DNA. These findings suggest important roles for the transcription factor NF-kappaB in modulation of voltage-dependent calcium channels and glutamate receptors and the many physiological and pathophysiological processes in which these ion channels are involved. Such signaling mechanisms may be particularly important in injury settings such as ischemia or trauma, where TNF alpha expression is increased and NF-kappaB is activated.
机译:肿瘤坏死因子-α(TNF alpha)是在大脑中对剧烈的神经元活动和组织损伤作出反应而迅速产生的一种细胞因子。 TNFα可能通过涉及转录因子NF-κB激活的机制保护神经元免受兴奋性毒性和氧化性损伤。培养的大鼠海马神经元中的全细胞穿孔膜片钳记录显示,TNFα的长期治疗(24-48小时)增加了Ca2 +电流密度。药理分析表明,通过L型电压依赖性钙通道的电流显着增加。长期使用TNFα治疗会导致谷氨酸,NMDA,AMPA和海藻酸盐诱导的电流减少。短时间暴露于TNFα(急性; 2小时)不会改变Ca2 +电流或谷氨酸受体激动剂诱导的电流。神经酰胺,一种激活转录因子NF-κB的细胞内信使,模仿TNF对Ca2 +电流密度和谷氨酸受体激动剂诱导的电流的作用。与kappaB诱饵DNA的共同处理消除了TNFα对Ca2 +电流和兴奋性氨基酸诱导的电流的影响,这表明在TNFα的作用中需要NF-κB激活。与未经处理的对照培养物或用kappaB诱饵DNA共同处理的培养物中的神经元相比,用TNFα预处理的神经元在膜去极化后表现出增加的细胞内Ca2 +浓度,但对兴奋性氨基酸的细胞内Ca2 +浓度响应降低。这些发现暗示了转录因子NF-κB在调节电压依赖性钙通道和谷氨酸受体以及涉及这些离子通道的许多生理和病理生理过程中的重要作用。这样的信号传导机制在诸如缺血或创伤的损伤环境中尤其重要,其中TNFα表达增加并且NF-κB被激活。

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