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Dephosphorylation and inactivation of NPR2 guanylyl cyclase in granulosa cells contributes to the LH-induced decrease in cGMP that causes resumption of meiosis in rat oocytes

机译:颗粒细胞中NPR2鸟苷酸环化酶的去磷酸化和失活有助于LH诱导的cGMP降低从而导致大鼠卵母细胞恢复减数分裂

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摘要

In mammals, the meiotic cell cycle of oocytes starts during embryogenesis and then pauses. Much later, in preparation for fertilization, oocytes within preovulatory follicles resume meiosis in response to luteinizing hormone (LH). Before LH stimulation, the arrest is maintained by diffusion of cyclic (c)GMP into the oocyte from the surrounding granulosa cells, where it is produced by the guanylyl cyclase natriuretic peptide receptor 2 (NPR2). LH rapidly reduces the production of cGMP, but how this occurs is unknown. Here, using rat follicles, we show that within 10 min, LH signaling causes dephosphorylation and inactivation of NPR2 through a process that requires the activity of phosphoprotein phosphatase (PPP)-family members. The rapid dephosphorylation of NPR2 is accompanied by a rapid phosphorylation of the cGMP phosphodiesterase PDE5, an enzyme whose activity is increased upon phosphorylation. Later, levels of the NPR2 agonist C-type natriuretic peptide decrease in the follicle, and these sequential events contribute to the decrease in cGMP that causes meiosis to resume in the oocyte.
机译:在哺乳动物中,卵母细胞的减数分裂细胞周期在胚胎发生期间开始,然后暂停。后来,在准备受精的过程中,排卵前卵泡内的卵母细胞响应黄体生成激素(LH)而恢复减数分裂。在LH刺激之前,通过将环状(c)GMP从周围的颗粒细胞扩散到卵母细胞中来维持阻滞作用,该过程由鸟苷酸环化酶利钠肽受体2(NPR2)产生。 LH迅速减少了cGMP的产生,但如何发生尚不清楚。在这里,我们使用大鼠卵泡显示,在10分钟内,LH信号通过需要磷蛋白磷酸酶(PPP)家族成员活性的过程引起NPR2的去磷酸化和失活。 NPR2的快速去磷酸化伴随有cGMP磷酸二酯酶PDE5的快速磷酸化,该酶的活性会随着磷酸化而增加。后来,NPR2激动剂C型利尿钠肽的水平在卵泡中降低,而这些顺序事件导致cGMP降低,从而导致卵母细胞恢复减数分裂。

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