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压力会改变间质细胞的转录活性,这种改变依赖于昼夜时间。

Stress alters the transcriptional activity of Leydig cells dependently on the diurnal time.

机构信息

Faculty of Sciences Novi Sad, Department of Biology and Ecology, Laboratory for Chronobiology and Aging, Laboratory for Reproductive Endocrinology and Signaling, The University of Novi Sad, Novi Sad, Serbia.

出版信息

Am J Physiol Cell Physiol. 2022 Aug 1;323(2):C322-C332. doi: 10.1152/ajpcell.00412.2021. Epub 2022 Jun 15.

Abstract

The increasing amount of data points to the circadian timing system as an essential part of processes regulating androgen homeostasis. However, the relationship between stress response, timekeeping-, and steroidogenesis-related systems is unexplored. Here, the stress-response of the testosterone-producing rat Leydig cells depending on the time of stressful events was studied. The study analyzes the effects of 3-h immobilization (IMO) applied at different periods during the day. The IMO performed once [1 time immobilization stress (1×IMO)] or repeated in 10 consecutive days [10 time repeated immobilization stress (10×IMO)]. Both types of IMO increased corticosterone and decreased testosterone blood level. However, the effect of 10×IMO occurring in the active phase on blood testosterone was less pronounced. This is related to different sensitivity to IMO-events depending on the diurnal time. Most steroidogenesis-related genes [gene encoding luteinizing hormone/choriogonadotropin receptor (), gene encoding cytochrome P450, family 11, subfamily a, polypeptide 1 (), gene encoding hydroxy-δ-5-steroid dehydrogenase, 3 β- and steroid δ-isomerase 1 (), and gene encoding cytochrome P450, family 17, subfamily a, polypeptide 1 ()] were downregulated in the inactive phase but unchanged or even upregulated in the active phase of the day. Both types of IMO stimulated the expression of clock elements gene encoding aryl hydrocarbon receptor nuclear translocator-like ()/aryl hydrocarbon receptor nuclear translocator-like (BMAL1), gene encoding period circadian regulator 1 ()period circadian regulator 1 (PER1) regardless of the day's stage and reduced gene encoding nuclear receptor subfamily 1, group D, member 1 () in the inactive phase. The principal component analysis (PCA) confirmed a major shift, for both IMO-types, in the transcription of the genes across the passive/active stage. Further, 10×IMO changed a diurnal pattern of the glucocorticoid receptor [gene encoding nuclear receptor subfamily 3, group C, member 1 ()/nuclear receptor subfamily 3, group C, member 1 (GR)] expression, whereas the observed time-dependent IMO-response of the Leydig cells correlated with different corticosterone engagements. Altogether, the Leydig cell's stress response depends on the daytime of the stressful event, emphasizing the importance of the circadian system in supporting androgen homeostasis and male fertility.

摘要

越来越多的数据表明,生物钟系统是调节雄激素动态平衡的过程中的一个重要组成部分。然而,压力反应、计时相关系统和类固醇生成相关系统之间的关系还没有被探索。在这里,研究了依赖于应激事件发生时间的产生睾酮的大鼠莱迪希细胞的应激反应。该研究分析了在一天中的不同时间段施加 3 小时束缚(IMO)的影响。IMO 施加一次[1 次束缚应激(1×IMO)]或连续 10 天重复[10 次重复束缚应激(10×IMO)]。这两种类型的 IMO 都会增加皮质酮并降低血液中的睾酮水平。然而,发生在活动期的 10×IMO 对血液睾酮的影响不那么明显。这与根据昼夜时间不同对 IMO 事件的敏感性不同有关。大多数类固醇生成相关基因[编码促黄体激素/绒毛膜促性腺激素受体的基因()、编码细胞色素 P450 家族 11 亚家族 a 多肽 1 的基因()、编码羟基-δ-5-类固醇脱氢酶、3β-和类固醇 δ-异构酶 1 的基因()和编码细胞色素 P450 家族 17 亚家族 a 多肽 1 的基因()]在非活动期下调,但在白天的活动期不变或甚至上调。这两种类型的 IMO 都刺激了时钟元件基因的表达,编码芳香烃受体核转位蛋白样()/芳香烃受体核转位蛋白样(BMAL1)和编码周期节律调节剂 1()周期节律调节剂 1(PER1),无论白天的阶段如何,并减少编码核受体亚家族 1、D 组、成员 1()在非活动期。主成分分析(PCA)证实,对于两种 IMO 类型,基因的转录在被动/主动阶段都发生了重大转变。此外,10×IMO 改变了糖皮质激素受体[编码核受体亚家族 3、C 组、成员 1()/核受体亚家族 3、C 组、成员 1(GR)]的昼夜表达模式,而观察到的 IMO 对莱迪希细胞的时间依赖性反应与不同的皮质酮结合有关。总的来说,莱迪希细胞的应激反应取决于应激事件发生的时间,这强调了生物钟系统在支持雄激素动态平衡和男性生育能力方面的重要性。

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