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Dephosphorylation of juxtamembrane serines and threonines of the NPR2 guanylyl cyclase is required for rapid resumption of oocyte meiosis in response to luteinizing hormone

机译:NPR2鸟苷酸环化酶的近膜丝氨酸和苏氨酸的去磷酸化是响应黄体生成激素快速恢复卵母细胞减数分裂所必需的

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摘要

The meiotic cell cycle of mammalian oocytes starts during embryogenesis and then pauses until luteinizing hormone (LH) acts on the granulosa cells of the follicle surrounding the oocyte to restart the cell cycle. An essential event in this process is a decrease in cyclic GMP in the granulosa cells, and part of the cGMP decrease results from dephosphorylation and inactivation of the natriuretic peptide receptor 2 (NPR2) guanylyl cyclase, also known as guanylyl cyclase B. However, it is unknown whether NPR2 dephosphorylation is essential for LH-induced meiotic resumption. Here, we prevented NPR2 dephosphorylation by generating a mouse line in which the seven regulatory serines and threonines of NPR2 were changed to the phosphomimetic amino acid glutamate (Npr2–7E). Npr2–7E/7E follicles failed to show a decrease in enzyme activity in response to LH, and the cGMP decrease was attenuated; correspondingly, LH-induced meiotic resumption was delayed. Meiotic resumption in response to EGF receptor activation was likewise delayed, indicating that NPR2 dephosphorylation is a component of the pathway by which EGF receptor activation mediates LH signaling. We also found that most of the NPR2 protein in the follicle was present in the mural granulosa cells. These findings indicate that NPR2 dephosphorylation in the mural granulosa cells is essential for the normal progression of meiosis in response to LH and EGF receptor activation. In addition, these studies provide the first demonstration that a change in phosphorylation of a transmembrane guanylyl cyclase regulates a physiological process, a mechanism that may also control other developmental events.
机译:哺乳动物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,直到促黄体生成激素(LH)作用于卵母细胞周围卵泡的颗粒细胞,从而重新开始细胞周期。此过程中的一个重要事件是颗粒细胞中环状GMP的降低,而部分cGMP降低是由于利钠肽受体2(NPR2)鸟苷酸环化酶(也称为鸟苷酸环化酶B)的去磷酸化和失活造成的。尚不清楚NPR2的去磷酸化是否对LH诱导的减数分裂恢复至关重要。在这里,我们通过产生一个小鼠品系来防止NPR2的去磷酸化,在该品系中,NPR2的7个调节性丝氨酸和苏氨酸变成了模拟磷酸氨基酸谷氨酸(Npr2-7E)。 Npr2-7E / 7E卵泡未能显示出响应LH的酶活性下降,而cGMP下降被减弱。相应地,LH诱导的减数分裂恢复被延迟。响应EGF受体活化的减数分裂恢复同样被延迟,表明NPR2去磷酸化是EGF受体活化介导LH信号传导途径的一部分。我们还发现,卵泡中的大多数NPR2蛋白都存在于壁颗粒细胞中。这些发现表明,壁膜颗粒细胞中的NPR2去磷酸化对于响应LH和EGF受体激活的减数分裂的正常进展是必不可少的。另外,这些研究提供了第一个证明,即跨膜鸟苷酰环化酶的磷酸化改变调节生理过程,该机制也可能控制其他发育事件。

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