Serotonin 1A receptor coupling to NF‐κB studied using inducible receptor expression in hippocampal neuron‐derived cells

T. Sobocki, I. Ray, P. Cano‐Sánchez, Probal Banerjee, E. Azmitia
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Abstract

The mechanism of serotonin 1A receptor (5-HT1A-R) mediated activation of NF-κB has been studied in non-neural cells, but this pathway has not been elucidated in neuronal cells. We have used inducible expression of the 5-HT1A-R in the hippocampal neuron-derived HN2 cells to analyze the coupling of this receptor to NF-κB. A construct harboring luciferase cDNA driven by a minimal promoter under the control of an NF-κB-specific enhancer element was transfected into these 5-HT1A-R-expressing HN2 cells. Using luciferase expression in the transfected cells, we have studied 5-HT1A-R agonist evoked activation of NF-κB. Inhibition of either mitogen activated protein kinase (MAPK) pathway with PD98059 or protein kinase C (PKC) with GFX caused elevation of the basal level of NF-κB activity but did not affect 5-HT1A-R mediated activation of NF-κB. Furthermore, neither the basal level of NF-κB nor its activation by a 5-HT1A-R agonist was altered by dibutyrylcAMP. Thus, the MAPK pathway and PKC cause inhibition of the basal NF-κB activity and the 5-HT1A-R-linked NF-κB activation does not require MAPK, PKC, and cAMP. Intriguingly, Western blot analysis showed that 5-HT1A-R mediates activation of both CaMKII and PI-3K. This 5-HT1A-R-evoked the stimulation of CaMKII was reversed in the presence of a PI-3K inhibitor. Therefore, the likely mechanism of 5-HT1A-R mediated induction of NF-κB in neuronal cells involves activation of PI-3K upstream of CaMKII. This reveals a novel pathway that could be crucial in the functional activity of brain neurons.
利用诱导受体在海马神经元源性细胞中的表达研究血清素1A受体与NF - κB的偶联
5-羟色胺1A受体(5-HT1A-R)在非神经细胞中介导NF-κB活化的机制已被研究,但这一途径在神经细胞中尚未被阐明。我们在海马神经元源性HN2细胞中诱导表达5-HT1A-R来分析该受体与NF-κB的偶联。将一个由NF-κ b特异性增强子元件控制的最小启动子驱动的荧光素酶cDNA构建体转染到这些表达5- ht1a - r的HN2细胞中。利用荧光素酶在转染细胞中的表达,我们研究了5-HT1A-R激动剂对NF-κB的激活作用。用PD98059抑制丝裂原活化蛋白激酶(MAPK)通路或用GFX抑制蛋白激酶C (PKC)通路均可引起NF-κB活性基础水平升高,但不影响5-HT1A-R介导的NF-κB活化。此外,二丁基camp既不改变NF-κB的基础水平,也不改变其被5-HT1A-R激动剂激活的情况。因此,MAPK途径和PKC导致基础NF-κB活性的抑制,而5- ht1a - r相关的NF-κB激活不需要MAPK、PKC和cAMP。有趣的是,Western blot分析显示5-HT1A-R介导CaMKII和PI-3K的激活。这种5- ht1a - r引起的CaMKII的刺激在PI-3K抑制剂的存在下被逆转。因此,5-HT1A-R介导的神经元细胞NF-κB的诱导可能与CaMKII上游PI-3K的激活有关。这揭示了一种可能对大脑神经元的功能活动至关重要的新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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