Ko Shanelle W, Vadakkan Kunjumon I, Ao Hushan, Gallitano-Mendel Amelia, Wei Feng, Milbrandt Jeffrey, Zhuo Min
Department of Physiology, University of Toronto, Faculty of Medicine, University of Toronto Centre for the Study of Pain, Toronto, Ontario, Canada.
J Pain. 2005 Jan;6(1):12-20. doi: 10.1016/j.jpain.2004.10.001.
The zinc finger transcription factor Egr1 is critical for coupling extracellular signals to changes in cellular gene expression. Expression of Egr1, as well as other immediate early genes, is up-regulated in response to a number of noxious stimuli. Activity-dependent activation of Egr1 has been reported in forebrain regions, including the anterior cingulate cortex (ACC), after peripheral injury. However, no study has reported a direct contribution of Egr1 to behavioral nociceptive responses. Here, we use Egr1 knockout mice to show that Egr1 is selectively required for behavioral responses to persistent inflammatory pain. Behavioral responses to peripheral inflammation were significantly reduced in Egr1 knockout mice, whereas responses to acute noxious stimuli were normal. In addition, inflammation triggered an up-regulation of Egr1 expression in the ACC of wild-type mice. Last, synaptic potentiation induced by theta (theta) burst stimulation in the ACC was significantly reduced or blocked in Egr1 knockout mice. Our study suggests that the transcription factor Egr1 plays a selective role in nociceptive behavioral responses to persistent inflammatory pain but not to acute noxious stimuli.
Chronic pain diminishes the quality of life. Here, we show that the immediate early gene Egr1 plays a role in chronic inflammatory, but not acute, pain. Egr1 knockout mice showed reduced nociceptive behaviors to persistent inflammatory pain and inflammation increased Egr1 expression in the anterior cingulate cortex of wild-type mice.
锌指转录因子Egr1对于将细胞外信号与细胞基因表达的变化相偶联至关重要。Egr1以及其他即刻早期基因的表达会因多种有害刺激而上调。据报道,在外周损伤后,包括前扣带回皮质(ACC)在内的前脑区域会出现Egr1的活性依赖性激活。然而,尚无研究报道Egr1对行为性伤害感受反应有直接作用。在此,我们使用Egr1基因敲除小鼠来表明Egr1是对持续性炎性疼痛的行为反应所选择性必需的。Egr1基因敲除小鼠对外周炎症的行为反应显著降低,而对急性有害刺激的反应则正常。此外,炎症引发了野生型小鼠ACC中Egr1表达的上调。最后,Egr1基因敲除小鼠中由θ波爆发刺激在ACC诱导的突触增强显著降低或被阻断。我们的研究表明,转录因子Egr1在对持续性炎性疼痛而非急性有害刺激的伤害感受行为反应中起选择性作用。
慢性疼痛会降低生活质量。在此,我们表明即刻早期基因Egr1在慢性炎症性疼痛而非急性疼痛中起作用。Egr1基因敲除小鼠对持续性炎性疼痛的伤害感受行为减少,并且炎症增加了野生型小鼠前扣带回皮质中Egr1的表达。