首页> 美国卫生研究院文献>Molecular Endocrinology >The Xenopus laevis Isoform of G Protein-Coupled Receptor 3 (GPR3) Is a Constitutively Active Cell Surface Receptor that Participates in Maintaining Meiotic Arrest in X. laevis Oocytes
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The Xenopus laevis Isoform of G Protein-Coupled Receptor 3 (GPR3) Is a Constitutively Active Cell Surface Receptor that Participates in Maintaining Meiotic Arrest in X. laevis Oocytes

机译:G蛋白偶联受体3(GPR3)的非洲爪蟾同工型是一种组成性活性细胞表面受体参与维持X. laevis卵母细胞的减数分裂。

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摘要

Oocytes are held in meiotic arrest in prophase I until ovulation, when gonadotropins trigger a subpopulation of oocytes to resume meiosis in a process termed “maturation.” Meiotic arrest is maintained through a mechanism whereby constitutive cAMP production exceeds phosphodiesterase-mediated degradation, leading to elevated intracellular cAMP. Studies have implicated a constitutively activated Gαs-coupled receptor, G protein-coupled receptor 3 (GPR3), as one of the molecules responsible for maintaining meiotic arrest in mouse oocytes. Here we characterized the signaling and functional properties of GPR3 using the more amenable model system of Xenopus laevis oocytes. We cloned the X. laevis isoform of GPR3 (XGPR3) from oocytes and showed that overexpressed XGPR3 elevated intraoocyte cAMP, in large part via Gβγ signaling. Overexpressed XGPR3 suppressed steroid-triggered kinase activation and maturation of isolated oocytes, as well as gonadotropin-induced maturation of follicle-enclosed oocytes. In contrast, depletion of XGPR3 using antisense oligodeoxynucleotides reduced intracellular cAMP levels and enhanced steroid- and gonadotropin-mediated oocyte maturation. Interestingly, collagenase treatment of Xenopus oocytes cleaved and inactivated cell surface XGPR3, which enhanced steroid-triggered oocyte maturation and activation of MAPK. In addition, human chorionic gonadotropin-treatment of follicle-enclosed oocytes triggered metalloproteinase-mediated cleavage of XGPR3 at the oocyte cell surface. Together, these results suggest that GPR3 moderates the oocyte response to maturation-promoting signals, and that gonadotropin-mediated activation of metalloproteinases may play a partial role in sensitizing oocytes for maturation by inactivating constitutive GPR3 signaling.
机译:卵母细胞在前期I处于减数分裂阻滞状态,直到排卵,此时促性腺激素触发卵母细胞亚群,从而在称为“成熟”的过程中恢复减数分裂。减数分裂阻滞是通过一种机制维持的,其中组成型cAMP产生超过磷酸二酯酶介导的降解,从而导致细胞内cAMP升高。研究表明,组成性激活的Gαs偶联受体G蛋白偶联受体3(GPR3)是负责维持小鼠卵母细胞减数分裂阻滞的分子之一。在这里,我们使用非洲爪蟾卵母细胞的更合适的模型系统表征了GPR3的信号传导和功能特性。我们从卵母细胞中克隆了GPR3的X. laevis同工型(XGPR3),并表明过表达的XGPR3在很大程度上通过Gβγ信号转导升高了卵内cAMP。过表达的XGPR3抑制类固醇触发的激酶激活和孤立的卵母细胞的成熟,以及促性腺激素诱导的卵泡封闭的卵母细胞的成熟。相反,使用反义寡脱氧核苷酸消耗XGPR3可降低细胞内cAMP水平,并增强类固醇和促性腺激素介导的卵母细胞成熟。有趣的是,爪蟾卵母细胞的胶原酶处理使细胞表面XGPR3裂解并失活,从而增强了类固醇触发的卵母细胞的成熟和MAPK的激活。此外,卵泡封闭卵母细胞的绒毛膜促性腺激素处理触发了卵母细胞表面金属蛋白酶介导的XGPR3裂解。总之,这些结果表明,GPR3减轻了卵母细胞对促进成熟的信号的反应,而促性腺激素介导的金属蛋白酶激活可能通过使组成型GPR3信号失活而在使卵母细胞成熟方面发挥了部分作用。

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