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首页> 外文期刊>Life sciences >The effect of follicle-stimulating hormone (FSH) on the expression of FSH receptor in cultured rat granulosa cells.
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The effect of follicle-stimulating hormone (FSH) on the expression of FSH receptor in cultured rat granulosa cells.

机译:促卵泡激素(FSH)对培养的大鼠颗粒细胞中FSH受体表达的影响。

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摘要

The acquisition of FSH receptors during folliculogenesis is believed to be a key event in the subsequent development of the follicle. The regulation by FSH of FSH receptor expression and function were further studied using cultured granulosa cells of diethylstilbestrol (DES)-primed immature rats. Incubation of rat granulosa cells with FSH led to a reduction in FSH receptor levels for a short time (6 h), followed by an increase in FSH receptor levels that reached maximum of around 150% of the initial level within 3 days after the addition of FSH. FSH stimulation caused a reduced cAMP response to subsequent FSH treatment and a time course experiment demonstrated that this response was detectable within 30 min of exposure to FSH and reached a plateau after 4 h to 24 h. The recovery of FSH responsiveness in cAMP production of granulosa cells was seen after 48 h of FSH-free interval. Treatment with forskolin (FSK) enhanced the effect of subsequent FSH on the production of intracellular cAMP. Treatment with PMA did not affect the response to subsequent FSH treatment. These data showed that the FSH is essential for the suppression of the FSH receptor function in the adenylyl cyclase pathway. Desensitization of cellular response to continuous agonist stimulation may occur because of changes in the numbers of FSH receptor, as well as changes in the functional properties of the effector system.
机译:卵泡发生期间FSH受体的获得被认为是卵泡随后发育的关键事件。 FSH对FSH受体表达和功能的调节作用是通过用己烯雌酚(DES)引发的未成熟大鼠的颗粒细胞培养来进行的。将大鼠颗粒细胞与FSH一起孵育可导致FSH受体水平在短时间内(6 h)下降,随后FSH受体水平增加,在添加FSH后3天内达到最大水平约150%的初始水平。 FSH。 FSH刺激引起对随后FSH治疗的cAMP响应降低,而时程实验表明,该响应在FSH暴露后30分钟内可检测到,并在4 h至24 h后达到平稳。在无FSH间隔48小时后,可见颗粒细胞cAMP产生中FSH反应性的恢复。用福司可林(FSK)处理可增强后续FSH对细胞内cAMP产生的影响。 PMA治疗不影响对随后FSH治疗的反应。这些数据表明,FSH对于抑制腺苷酸环化酶途径中的FSH受体功能至关重要。由于FSH受体数量的变化以及效应系统功能特性的变化,可能会导致细胞对连续激动剂刺激的反应降低。

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