首页> 美国卫生研究院文献>Endocrinology >Progestin Signaling Through mPRα in Atlantic Croaker Granulosa/Theca Cell Cocultures and Its Involvement in Progestin Inhibition of Apoptosis
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Progestin Signaling Through mPRα in Atlantic Croaker Granulosa/Theca Cell Cocultures and Its Involvement in Progestin Inhibition of Apoptosis

机译:大西洋黄花鱼/ Theca细胞共培养物中通过mPRα传递的孕激素信号及其参与孕激素抑制细胞凋亡的作用。

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摘要

Although there is substantial evidence that membrane progestin receptors (mPRs) perform a critical physiological role in meiotic maturation of fish oocytes, it is unknown whether they are also intermediaries in progestin signaling in the surrounding follicular cells. Here, we show that mPRα protein is located on the plasma membranes of both granulosa and theca cells (G/T cells) isolated from Atlantic croaker ovaries and is associated with the presence of a single high affinity, limited capacity, pertussis toxin-sensitive, specific progestin [17,20β,21-trihydroxy-4-pregnen-3-one (20β-S)] membrane binding site with the characteristics of mPRα. Treatment of G/T cells with 20β-S caused rapid G protein activation and a transient, pertussis toxin-sensitive, decrease in cAMP levels, whereas the selective nuclear progesterone receptor agonist, R5020, did not cause G protein activation, consistent with previous reports on mPRα signaling. 20β-S treatment decreased serum starvation-induced cell death in both G/T cells and in seatrout mPRα-transfected MDA-MB-231 cells, whereas R5020 was ineffective. Moreover, a selective mPRα agonist, 10-ethenyl-19-norprogesterone, mimicked the protective action of 20β-S against cell death, which was lost upon knockdown of mPRα protein but not after progesterone receptor knockdown, further demonstrating an involvement of mPRα. Signaling molecules involved in inhibition of apoptosis, Erk and serine-threonine kinase, were activated in G/T cells by 20β-S, which suggests a potential mechanism for mPRα inhibition of apoptosis. This is the first study to demonstrate endogenous mPR signaling in the ovarian follicle and to suggest a novel physiological role for mPRα in mediating the antiapoptotic actions of progestins in ovarian follicle cells.
机译:尽管有大量证据表明膜孕激素受体(mPRs)在鱼卵母细胞减数分裂成熟中起着关键的生理作用,但尚不清楚它们是否也是周围卵泡细胞中孕激素信号传导的中介。在这里,我们显示mPRα蛋白位于从大西洋黄花鱼卵巢分离的颗粒和theca细胞(G / T细胞)的质膜上,并且与单个高亲和力,有限容量,百日咳毒素敏感,具有mPRα特征的特异孕激素[17,20β,21-三羟基-4-孕烯-3-酮(20β-S)]膜结合位点。用20β-S处理G / T细胞导致快速的G蛋白活化和对百日咳毒素敏感的短暂cAMP水平降低,而选择性核孕激素受体激动剂R5020并未引起G蛋白活化,这与以前的报道一致在mPRα信号转导上。 20β-S处理降低了G / T细胞和淘汰mPRα转染的MDA-MB-231细胞中血清饥饿诱导的细胞死亡,而R5020无效。此外,选择性的mPRα激动剂10-乙烯基-19-去甲孕酮模拟了20β-S对细胞死亡的保护作用,该作用在敲除mPRα蛋白后消失,但在孕酮受体敲除后并未消失,这进一步证明了mPRα的参与。参与抑制细胞凋亡的信号分子,Erk和丝氨酸-苏氨酸激酶被20β-S激活在G / T细胞中,这提示mPRα抑制细胞凋亡的潜在机制。这是第一项证明卵巢卵泡中内源性mPR信号转导,并提出mPRα在介导孕卵在卵巢卵泡细胞中的抗凋亡作用中的新型生理作用。

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