首页> 外文期刊>Journal of Neuroscience Research >The MAPK pathway is required for depolarization-induced 'promiscuous' immediate-early gene expression but not for depolarization-restricted immediate-early gene expression in neurons.
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The MAPK pathway is required for depolarization-induced 'promiscuous' immediate-early gene expression but not for depolarization-restricted immediate-early gene expression in neurons.

机译:MAPK通路是去极化诱导的“混杂”立即早期基因表达所必需的,而不是去极化限制的立即早期基因表达在神经元中所必需的。

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摘要

Depolarization, growth factors, neurotrophins, and other stimuli induce expression of immediate early genes (IEGs) in neurons. We identified a subset of IEGs, IPD-IEGs, which are induced preferentially by depolarization, but not by neurotrophins or growth factors, in PC12 cells. The "promiscuous" IEGs Egr1 and c-fos, induced by growth factors and neurotrophins, in addition to depolarization, require activation of the MAP kinase signaling pathway for induction in response to KCl depolarization in PC12 cells; MEK1/2 inhibitors block KCl-induced Egr1 and c-fos expression. In contrast, MEK1/2 inhibition has no effect on KCl-induced expression of the known IPD-IEGs in PC12 cells. Additional "candidate" IDP-IEGs were identified by a microarray comparison of genes induced by KCl in the presence vs. the absence of an MEK1/2 inhibitor in PC12 cells. Northern blot analyses demonstrated that representative newly identified candidate IPD-IEGs, as with the known IPD-IEGs, are also induced by a MAP kinase- independent pathway in response to depolarization, both in PC12 cells and in rat primary cortical neurons. Nerve growth factor and epidermal growth factor are unable to induce the expression of the Crem/Icer, Nur77, Nor1, Rgs2, Dusp1 (Mkp1), and Dscr1 genes in PC12 cells, validating their identification as IPD-IEGs. Inhibiting calcium/calmodulin-dependent kinase II (CaMKII), calcineurin, or protein kinase A (PKA) activity prevents KCl-induced IPD-IEG mRNA accumulation, suggesting that the IPD-IEG genes are induced by depolarization in neurons via a combination of calcineurin/PKA- and CaMKII-dependent pathways.
机译:去极化,生长因子,神经营养蛋白和其他刺激诱导神经元中立即早期基因(IEG)的表达。我们鉴定了PC12细胞中IEG,IPD-IEG的一个子集,这些子集优先通过去极化而不是神经营养蛋白或生长因子诱导。生长因子和神经营养蛋白诱导的“混杂” IEG Egr1和c-fos除去极化外,还需要激活MAP激酶信号传导途径,以响应PC12细胞中的KCl去极化。 MEK1 / 2抑制剂阻断KCl诱导的Egr1和c-fos表达。相反,MEK1 / 2抑制对PC12细胞中KCl诱导的已知IPD-IEG的表达没有影响。通过微阵列比较在PC12细胞中存在或不存在MEK1 / 2抑制剂的情况下,由KCl诱导的基因的微阵列比较来鉴定另外的“候选” IDP-IEG。 Northern印迹分析表明,与已知的IPD-IEG一样,代表性的新近鉴定的候选IPD-IEG在PC12细胞和大鼠原代皮层神经元中也响应于去极化而由MAP激酶独立途径诱导。神经生长因子和表皮生长因子无法诱导PC12细胞中Crem / Icer,Nur77,Nor1,Rgs2,Dusp1(Mkp1)和Dscr1基因的表达,从而验证了它们作为IPD-IEG的身份。抑制钙/钙调蛋白依赖性激酶II(CaMKII),钙调神经磷酸酶或蛋白激酶A(PKA)活性可阻止KCl诱导的IPD-IEG mRNA积累,表明IPD-IEG基因是通过钙调神经磷酸酶的结合在神经元中去极化诱导的/ PKA和CaMKII依赖性途径。

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