首页> 外文期刊>Molecular pharmacology. >A calcium-initiated signaling pathway propagated through calcineurin and cAMP response element-binding protein activates proenkephalin gene transcription after depolarization.
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A calcium-initiated signaling pathway propagated through calcineurin and cAMP response element-binding protein activates proenkephalin gene transcription after depolarization.

机译:通过钙调神经磷酸酶和cAMP反应元件结合蛋白传播的钙起始信号通路在去极化后激活前脑啡肽基因转录。

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摘要

Essential components of a signal-transduction pathway regulating activity-dependent neuropeptide gene transcription have been identified. Proenkephalin (PEnk) gene activation after depolarization of chromaffin cells with 40 mM KCl was blocked by the voltage-sensitive calcium-channel blocker methoxyverapamil (D600) (30 microM) and by calcineurin inhibition with 100 nM cyclosporin A or ascomycin but not by inhibiting new protein synthesis with 0.5 microg/ml cycloheximide. KCl-induced elevation of PEnk mRNA was distinct from activation of the PEnk gene by either cAMP or protein kinase C. Twenty-five micromolar forskolin- and 100 nM phorbol 12-myristate 13-acetate-induced elevations of PEnk mRNA were cycloheximide-sensitive and were not blocked by cyclosporin A or ascomycin. KCl stimulated Ser-133 phosphorylation of cAMP response element-binding protein (CREB) in chromaffin cells, and CREB phosphorylation was blocked by both ascomycin and D600. A reporter gene containing 193 bases of the PEnk gene 5' flankdriving luciferase gene expression (pENK12-Luc) transfected into chromaffin cells was transcriptionally activated by KCl depolarization. Activation was blocked by both ascomycin and D600 and required an intact CREB binding site (ENKCRE2). An oligonucleotide containing the PEnk cAMP response element-2 was gel-shifted by both unstimulated and potassium-stimulated chromaffin cell nuclear extracts into a prominent complex supershifted by CREB antibodies. Finally, stimulation of transcription of the pENK12-Luc reporter by KCl in chromaffin cells was blocked by coexpression of the CREB antagonist A-CREB but not by the AP-1 antagonist A-Fos. Stimulus-transcription coupling after depolarization in chromaffin cells occurs via calcineurin-dependent activation of CREB, a pathway distinct from cAMP- or protein kinase C-initiated signaling and independent of immediate early gene regulation.
机译:已经确定了调节活性依赖性神经肽基因转录的信号转导途径的基本组成部分。用电压敏感的钙通道阻滞剂甲氧基维拉帕米(D600)(30 microM)和钙调神经磷酸酶用100 nM环孢菌素A或子囊霉素抑制可阻断嗜铬粒细胞用40 mM KCl去极化后的原脑啡肽(PEnk)基因激活,但不能通过抑制新的0.5微克/毫升的环己酰亚胺进行蛋白质合成。 KCl诱导的PEnk mRNA的升高不同于cAMP或蛋白激酶C对PEnk基因的激活。25微摩尔福司柯林和100 nM佛波醇12-肉豆蔻酸酯13-乙酸酯诱导的PEnk mRNA升高是对环己酰亚胺敏感的并且没有被环孢菌素A或子囊霉素阻断。 KCl刺激嗜铬细胞中cAMP反应元件结合蛋白(CREB)的Ser-133磷酸化,而子囊霉素和D600均阻断了CREB的磷酸化。通过KCl去极化转录激活了包含193个碱基的PEnk基因5'侧翼荧光素酶基因表达(pENK12-Luc)的报告基因(pENK12-Luc)。活化被子囊霉素和D600阻断,需要完整的CREB结合位点(ENKCRE2)。含有PEnk cAMP反应元件2的寡核苷酸被未刺激的和钾刺激的嗜铬细胞核提取物凝胶转移到CREB抗体超转移的显着复合物中。最后,CREB拮抗剂A-CREB的共表达阻止了KCl在嗜铬细胞中刺激pENK12-Luc报告基因的转录,但AP-1拮抗剂A-Fos的共表达没有阻止。嗜铬细胞中去极化后的刺激-转录偶联是通过钙调磷酸酶依赖性的CREB激活而发生的,CREB是不同于cAMP或蛋白激酶C的信号传导途径,且不依赖于早期早期基因调控。

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