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Mechanisms of luteinization in the primate ovary

Mechanisms of luteinization in the primate ovary
灵长类动物卵巢黄素化机制
批准号:
6757247
负责人:
CHARLES L CHAFFIN
金额:
$28.25万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-07-01 至 2005-04-01

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中文摘要
翻译
描述(由申请人提供):最近在灵长类动物中的证据表明,颗粒细胞的增殖在排卵期的第一个季度内被阻止。然而,细胞周期进展的特定标记物,如细胞周期蛋白D2,在细胞周期阻滞的同时增加,而细胞周期抑制因子如p53的水平降低。该应用程序将验证一个假设,即排卵刺激会引起颗粒细胞增殖的短暂爆发,而颗粒细胞增殖是灵长类动物终末分化和黄体形成的基本特征。实验计划检测颗粒细胞在体外注射促性腺激素促黄体素后早期时间点的细胞周期特征,以及成年雌性恒河猴体内排卵刺激后的细胞周期特征(目的1)。增殖爆发对颗粒细胞终末分化和黄体素化的功能影响将通过体外实验确定(目的2)。这一应用将进一步验证雌激素通过调节关键细胞周期成分介导增殖爆发的假设,以及早期排卵期雌激素的作用对功能性黄体的形成至关重要(目的3)。拟议的研究将利用体内控制的卵巢刺激模型,在该模型中可以确定促性腺激素和类固醇的不同作用。颗粒细胞将在体外实验中从接受受控卵巢刺激的恒河猴身上获得,然后进行排卵刺激。mRNA水平将通过实时RT-PCR检测,蛋白水平和活性将通过western blot、凝胶转移和激酶检测检测。类固醇激素的浓度将通过RIA测定。提出的研究有望证明灵长类颗粒细胞在排卵刺激下经历增殖爆发,这是黄体化的重要组成部分。预计雌激素通过调控关键细胞周期组分,在推动增殖爆发方面发挥了迄今未预料到的作用。这些研究将为卵巢癌和某些类型的不孕症的病因提供见解,并为避孕药提供潜在的新途径。
英文摘要
DESCRIPTION (provided by applicant): Recent evidence in primates demonstrates that proliferation of granulosa cells is arrested within the first quarter of the periovulatory interval. However, specific markers of cell cycle progression, e.g., cyclin D2, are increased while levels of cell cycle suppressors such as p53 are reduced in concurrence with cell cycle arrest. This application will test the hypothesis that an ovulatory stimulus induces a transient burst of granulosa cell proliferation that is an essential feature of terminal differentiation and luteal formation in the primate. Experiments are planned to examine cell cycle characteristics of granulosa cells at early time points following a luteinizing dose of gonadotropin to granulosa cells in vitro and after an ovulatory stimulus to adult, female rhesus monkeys in vivo (aim 1). The functional consequences of the proliferative burst on terminal differentiation and luteinization of granulosa cells will be determined using in vitro protocols (aim 2). This application will further test the hypothesis that estrogen mediates the proliferative burst via regulation of key cell cycle components, and that early periovulatory estrogen action is essential to the formation of a functional corpus luteum (aim 3). The proposed studies will utilize an in vivo controlled ovarian stimulation model in which the differential effects of gonadotropins and steroids can be determined. Granulosa cells will be obtained from rhesus monkeys undergoing controlled ovarian stimulation prior to an ovulatory stimulus for in vitro experimentation. Levels of mRNA will be determined with real time RT-PCR, and protein levels and activity by western blot, gel shift, and kinase assays. Concentrations of steroid hormones will be measured by RIA. The proposed studies are expected to demonstrate that primate granulosa cells undergo a proliferative burst in response to the ovulatory stimulus that is an essential component of luteinization. It is expected that estrogen plays a heretofore unexpected role in driving the proliferative burst through the regulation of key cell cycle components. These studies will provide insight into the etiologies of ovarian cancer and certain kinds of infertility, as well as provide potential novel avenues for contraceptive agents.
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