Henry Wellcome Laboratories for Integrative Neuroscience and Endocrinology, School of Clinical Sciences, University of Bristol, Dorothy Hodgkin Building, Whitson Street, Bristol BS1 3NY, UK.
Mol Cell Endocrinol. 2013 May 22;371(1-2):114-23. doi: 10.1016/j.mce.2012.11.010. Epub 2012 Nov 21.
The circadian rhythm of corticosterone (CORT) secretion from the adrenal cortex is regulated by the suprachiasmatic nucleus (SCN), which is entrained to the light-dark cycle. Since the circadian CORT rhythm is associated with circadian expression of the steroidogenic acute regulatory (StAR) protein, we investigated the 24h pattern of hormonal secretion (ACTH and CORT), steroidogenic gene expression (StAR, SF-1, DAX1 and Nurr77) and the expression of genes involved in ACTH signalling (MC2R and MRAP) in rats entrained to a normal light-dark cycle. We found that circadian changes in ACTH and CORT were associated with the circadian expression of all gene targets; with SF-1, Nurr77 and MRAP peaking in the evening, and DAX1 and MC2R peaking in the morning. Since disruption of normal SCN activity by exposure to constant light abolishes the circadian rhythm of CORT in the rat, we also investigated whether the AM-PM variation of our target genes was also disrupted in rats exposed to constant light conditions for 5weeks. We found that the disruption of the AM-PM variation of ACTH and CORT secretion in rats exposed to constant light was accompanied by a loss of AM-PM variation in StAR, SF-1 and DAX1, and a reversed AM-PM variation in Nurr77, MC2R and MRAP. Our data suggest that circadian expression of StAR is regulated by the circadian expression of nuclear receptors and proteins involved in both ACTH signalling and StAR transcription. We propose that ACTH regulates the secretion of CORT via the circadian control of steroidogenic gene pathways that become dysregulated under the influence of constant light.
皮质酮(CORT)从肾上腺皮质的分泌节律受视交叉上核(SCN)调节,该节律与光-暗周期同步。由于昼夜节律的 CORT 节律与类固醇生成急性调节蛋白(StAR)的昼夜节律表达有关,我们研究了在正常光-暗周期下同步化的大鼠的激素分泌(ACTH 和 CORT)、类固醇生成基因表达(StAR、SF-1、DAX1 和 Nurr77)以及涉及 ACTH 信号通路的基因表达(MC2R 和 MRAP)的 24 小时模式。我们发现,ACTH 和 CORT 的昼夜变化与所有基因靶标的昼夜节律表达相关;SF-1、Nurr77 和 MRAP 在晚上达到峰值,DAX1 和 MC2R 在早上达到峰值。由于暴露于恒定光下破坏正常 SCN 活动会使大鼠的 CORT 昼夜节律消失,我们还研究了我们的靶基因在连续 5 周暴露于恒定光条件下是否也会破坏 AM-PM 变化。我们发现,暴露于恒定光下的大鼠的 ACTH 和 CORT 分泌的 AM-PM 变化的破坏伴随着 StAR、SF-1 和 DAX1 的 AM-PM 变化的丧失,以及 Nurr77、MC2R 和 MRAP 的 AM-PM 变化的逆转。我们的数据表明,StAR 的昼夜节律表达受核受体和参与 ACTH 信号转导和 StAR 转录的蛋白质的昼夜节律表达调节。我们提出,ACTH 通过对类固醇生成基因途径的昼夜节律控制来调节 CORT 的分泌,这些途径在恒定光的影响下会失调。