首页> 美国卫生研究院文献>The Journal of Neuroscience >Peripheral Axotomy Induces Long-Term c-Jun Amino-Terminal Kinase-1 Activation and Activator Protein-1 Binding Activity by c-Jun and junD in Adult Rat Dorsal Root Ganglia In Vivo
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Peripheral Axotomy Induces Long-Term c-Jun Amino-Terminal Kinase-1 Activation and Activator Protein-1 Binding Activity by c-Jun and junD in Adult Rat Dorsal Root Ganglia In Vivo

机译:外周轴切术诱导成年大鼠背根神经节体内长期c-Jun氨基末端激酶1激活和激活蛋白1结合活性的c-Jun和junD

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摘要

One of the earliest documented molecular events after sciatic nerve injury in adult rats is the rapid, long-term upregulation of the immediate early gene transcription factor c-Jun mRNA and protein in lumbar dorsal root ganglion (DRG) neurons, suggesting that c-Jun may regulate genes that are important both in the early post-injury period and during later peripheral axonal regeneration. However, neither the mechanism through which c-Jun protein is increased nor the level of its post-injury transcriptional activity in axotomized DRGs has been characterized. To determine whether transcriptional activation of c-Jun occurs in response to nerve injury in vivo and is associated with axonal regeneration, we have assayed axotomized adult rat DRGs for evidence of jun kinase activation, c-Jun phosphorylation, and activator protein-1 (AP-1) binding. We report that sciatic nerve transection resulted in chronic activation of c-Jun amino-terminal kinase-1 (JNK) in L4/L5 DRGs concomitant with c-Jun amino-terminal phosphorylation in neurons, and lasting AP-1 binding activity, with both c-Jun and JunD participating in DNA binding complexes. The timing of JNK activation was dependent on the distance of the axotomy site from the DRGs, suggesting the requirement for a retrograde transport-mediated signal. AP-1 binding and c-Jun protein returned to basal levels in DRGs as peripheral regeneration was completed but remained elevated in the case of chronic sprouting, indicating that c-Jun may regulate target genes that are involved in axonal outgrowth.
机译:成年大鼠坐骨神经损伤后最早的分子事件之一是腰背根神经节(DRG)神经元中立即早期基因转录因子c-Jun mRNA和蛋白的快速,长期上调,提示c-Jun可能调节在损伤后早期和随后的外周轴突再生中都重要的基因。然而,既没有表征c-Jun蛋白增加的机制,也没有表征轴突切除的DRGs中其损伤后转录活性的水平。为了确定c-Jun的转录激活是否在体内响应神经损伤而发生并与轴突再生有关,我们已经对经轴切处理的成年大鼠DRGs进行了Jun激酶激活,c-Jun磷酸化和激活蛋白1(AP)的证据的分析。 -1)绑定。我们报告说,坐骨神经横断导致L4 / L5 DRGs中的c-Jun氨基末端激酶1(JNK)与神经元中的c-Jun氨基末端磷酸化同时发生,并持续AP-1结合活性,两者均导致慢性激活c-Jun和JunD参与DNA结合复合体。 JNK激活的时机取决于轴突切开部位与DRG的距离,表明需要逆行转运介导的信号。随着外周再生的完成,DR-1中的AP-1结合和c-Jun蛋白恢复到基础水平,但在慢性萌芽的情况下仍保持较高水平,这表明c-Jun可能调节了轴突生长相关的靶基因。

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