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The Effect of Acute and Repeated Stress on CRH-R1 and CRH-R2 mRNA Expression in Pituitaries of Wild Type and CRH Knock-Out Mice

机译:急性和反复胁迫对野生型垂体CRH-R1和CRH-R2 mRNA表达的影响,CRH敲除小鼠

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Abstract The activation of the HPA axis is the endocrine measure of stress responsiveness that is initiated by corticotropin-releasing hormone (CRH). CRH exerts its effects via CRHR1 and CRH-R2 receptors coupled to the cAMP signaling system and this process involves transcription factor cAMP-responsive element-binding protein (CREB).This study investigated the role of CRH and the possible involvement of CREB in gene regulation of CRH receptor, under basal conditions and after stress application in the pituitary. We used wild type (wt +/+) controls and CRH knock-out (CRH-KO??/?) male mice. Using CRH-deficient mice, we were able to investigate the consequences of the lack of the CRH on the expression of CRH receptors and transcriptional regulation mediated by CREB. We estimated the effect of acute (IMO 1×) and repeated (IMO 7×) restraint stressors lasting 30 and 120?min on the expression of mRNA CREB, CRH-R1, and CRH-R2 by qPCR. We found very significant difference in the expression of these peptides under the effect of single and repeated stress in control and CRH-KO mice. Our results indicate that both CRH receptors and CREB might be involved in the regulation of stress response in the pituitary of mice. We propose that regulation of the stress response may be better understood if more were known about the mechanisms of CRH receptor signal transduction and involvement of CREB system.
机译:摘要HPA轴的激活是由皮质甾醇释放激素(CRH)引发的应激响应性的内分泌衡量。 CRH通过CRHR1和CRH-R2受体施加到CAMP信号系统的CRH-R2受体,并且该过程涉及转录因子阵营响应元素结合蛋白(CREB)。本研究调查了CRH的作用和CREB在基因调节中的可能涉及的作用基础条件下的CRH受体和垂体压力施用后的基础。我们使用野生型(WT + / +)对照和CRH敲除(CRH-KO ?? /?)雄性小鼠。使用CRH缺陷的小鼠,我们能够研究缺乏CRH对CRH受体表达和CREB介导的转录调节的后果。我们估计急性(IMO 1×)和重复(IMO 7×)约束应激源持续30和120?min对mRNA CREB,CRH-R1和CRH-R2通过QPCR的影响。我们发现在对照和CRH-KO小鼠的单一和重复胁迫下,这些肽表达的表达非常显着。我们的结果表明,CRH受体和CREB均可参与小鼠垂体中应力反应的调节。我们建议可以更好地理解应力反应的调节,如果关于CRH受体信号转导和CREB系统的累及。

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