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The opposite roles of glucocorticoid and α1-adrenergic receptors in stress triggered apoptosis of rat Leydig cells

机译:糖皮质激素和α1-肾上腺素能受体在应激中的相反作用触发大鼠Leydig细胞凋亡

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摘要

The stress-induced initiation of proapoptotic signaling in Leydig cells is relatively well defined, but the duration of this signaling and the mechanism(s) involved in opposing the stress responses have not been addressed. In this study, immobilization stress (IMO) was applied for 2 h daily, and animals were euthanized immediately after the first (IMO1), second (IMO2), and 10th (IMO10) sessions. In IMO1 and IMO2 rats, serum corticosterone and adrenaline were elevated, whereas serum androgens and mRNA transcription of insulin-like factor-3 in Leydig cells were inhibited. Reduced oxygen consumption and the mitochondrial membrane potential coupled with a leak of cytochrome c from mitochondria and increased caspase-9 expression, caspase-3 activity, and number of apoptotic Leydig cells was also observed. Corticosterone and adrenaline were also elevated in IMO10 rats but were accompanied with a partial recovery of androgen secretion and normalization of insulin-like factor-3 transcription coupled with increased cytochrome c expression, abolition of proapoptotic signaling, and normalization of the apoptotic events. Blockade of intratesticular glucocorticoid receptors diminished proapoptotic effects without affecting antiapoptotic effects, whereas blockade of intratesticular α1-adrenergic receptors diminished the antiapoptotic effects without affecting proapoptotic effects. These results confirmed a critical role of glucocorticoids in mitochondria-dependent apoptosis and showed for the first time the relevance of stress-induced upregulation of α1-adrenergic receptor expression in cell apoptotic resistance to repetitive IMOs. The opposite role of two hormones in control of the apoptotic rate in Leydig cells also provides a rationale for a partial recovery of androgen production in chronically stressed animals.
机译:应激诱导的Leydig细胞中凋亡诱导信号传导的启动相对较好地定义,但是该信号传导的持续时间以及与对抗应激反应有关的机制尚未得到解决。在这项研究中,每天施加固定压力(IMO)2小时,并在第一次(IMO1),第二次(IMO2)和第十次(IMO10)进行安乐死。在IMO1和IMO2大鼠中,血清皮质酮和肾上腺素升高,而Leydig细胞中的血清雄激素和胰岛素样因子3的mRNA转录受到抑制。还观察到减少的氧气消耗和线粒体膜电位,以及线粒体细胞色素c的泄漏和caspase-9表达,caspase-3活性以及凋亡Leydig细胞数量的增加。皮质激素和肾上腺素在IMO10大鼠中也升高,但伴随着雄激素分泌的部分恢复和胰岛素样因子3转录的正常化,同时细胞色素c表达增加,凋亡信号转导的废止和凋亡事件的正常化。阻断睾丸内糖皮质激素受体可降低促凋亡作用,而不会影响抗凋亡作用,而阻断睾丸内α1-肾上腺素能受体可降低抗凋亡作用而不影响促凋亡作用。这些结果证实了糖皮质激素在线粒体依赖性细胞凋亡中的关键作用,并首次显示了应力诱导的α1-肾上腺素受体表达上调与细胞对重复性IMO的细胞凋亡抗性的相关性。两种激素在控制Leydig细胞凋亡率中的相反作用,也为慢性应激动物雄激素产生的部分恢复提供了理论依据。

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