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Defective Gonadotropin-Dependent Ovarian Folliculogenesis and Granulosa Cell Gene Expression in Inhibin-Deficient Mice

机译:缺陷性促性腺激素依赖性卵巢卵泡形成和抑制素缺乏小鼠的颗粒细胞基因表达。

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摘要

Inhibin-α knockout (Inha−/−) female mice develop sex cord-stromal ovarian cancer with complete penetrance and previous studies demonstrate that the pituitary gonadotropins (FSH and LH) are influential modifiers of granulosa cell tumor development and progression in inhibin-deficient females. Recent studies have demonstrated that Inha−/− ovarian follicles develop precociously to the early antral stage in prepubertal mice without any increase in serum FSH. These studies suggest that in the absence of inhibins, granulosa cells differentiate abnormally and thus at sexual maturity may undergo an abnormal response to gonadotropin signaling contributing to tumor development. To test this hypothesis, we stimulated immature wild-type and Inha−/− female mice with gonadotropin analogs prior to tumor formation and subsequently examined gonadotropin-induced ovarian follicle development as well as preovulatory and human chorionic gonadotropin-induced gene expression changes in granulosa cells. We find that at 3 wk of age, inhibin-deficient ovaries do not show further antral development or undergo cumulus expansion. In addition, there are widespread alterations in the transcriptome of gonadotropin-treated Inha−/− granulosa cells, with significant changes in genes involved in extracellular matrix and cell-cell communication. These data indicate the gonadotropins initiate an improper program of cell differentiation prior to tumor formation in the absence of inhibins.
机译:抑制素-α基因敲除(Inha -// )雌性小鼠发展成具有完全外显力的性索-间质性卵巢癌,先前的研究表明垂体促性腺激素(FSH和LH)是颗粒细胞肿瘤发展的重要影响因子和抑制素缺乏女性的进展。最近的研究表明,青春期前小鼠的Inha -/-卵巢卵泡早熟发展到肛门早期,而血清FSH却没有增加。这些研究表明,在没有抑制剂的情况下,颗粒细胞会异常分化,因此在性成熟时可能会对促性腺激素信号转导异常反应,从而促进肿瘤的发展。为了验证这一假设,我们在肿瘤形成之前用促性腺激素类似物刺激了未成熟的野生型和Inha -/-雌性小鼠,随后检查了促性腺激素诱导的卵巢卵泡发育以及排卵前和人绒毛膜促性腺激素-诱导颗粒细胞的基因表达变化。我们发现,在3周龄时,缺乏抑制素的卵巢不会显示出进一步的肛门发育或经历积丘扩张。此外,促性腺激素处理过的Inha -/-颗粒细胞的转录组中存在广泛的改变,参与细胞外基质和细胞间通讯的基因发生了显着变化。这些数据表明,在没有抑制剂的情况下,促性腺激素在肿瘤形成之前启动了不正确的细胞分化程序。

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