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首页> 外文期刊>Journal of reproduction and fertility >E-cadherin-catenin complex in the rat ovary: cell-specific expression during folliculogenesis and luteal formation
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E-cadherin-catenin complex in the rat ovary: cell-specific expression during folliculogenesis and luteal formation

机译:大鼠卵巢中的E-钙黏着蛋白-连环蛋白复合物:卵泡形成和黄体形成过程中的细胞特异性表达

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The cadherins and their cytoplasmic counterparts, the catenins, form the adherens junctions, which are of importance for tissue integrity and barrier functions. The development and maturation of the ovarian follicle is characterized by structural changes, which require altered expression or function of the components involved in cell-cell contacts. The present study examined the cell-specific localization and temporal expression of epithelial cadherin (E-cadherin) and alpha- and beta-catenin during follicular development, ovulation and corpus luteum formation in the immature gonadotrophin- and oestrogen-stimulated rat ovary. Immunohistochemistry and immunoblotting demonstrated the expression of E-cadherin in theca and interstitial cells of immature ovaries before and after injection of equine chorionic gonadotrophin (eCG). E-cadherin was not detected in granulosa cells, except in the preantral follicles located to the inner region of the ovary. The content of E-cadherin in theca and interstitial cells decreased after an ovulatory dose of hCG. Granulosa cells of apoptotic follicles did not express E-cadherin. Oestrogen treatment (diethylstilboestrol) of immature rats for up to 3 days did not result in a measurable expression of E-cadherin in granulosa cells. alpha- and beta-catenin were expressed in all ovarian compartments. The concentration of beta-catenin was constant during the follicular phase, whereas the content of alpha-catenin decreased in granulosa cells after treatment with diethylstilboestrol or hCG. The expression of alpha-catenin was also reduced in theca and interstitial cells after hCG. alpha- and beta-catenin were present in most ovarian cells at all stages of folliculogenesis. Therefore, the catenins have the potential to associate with different members of the cadherin family and to participate in the regulation of cytoskeletal structures and intracellular signalling. The restricted expression of E-cadherin in granulosa cells of preantral follicles indicates a role in the recruitment of these follicles to subsequent cycles. The specific decrease of alpha-catenin in granulosa cells and the reduction of both alpha-catenin and E-cadherin in theca cells of ovulatory follicles might reflect some of the molecular changes in cell-cell adhesion associated with ovulation and luteinization.
机译:钙粘蛋白及其胞质对应物连环蛋白形成粘附连接,这对于组织完整性和屏障功能很重要。卵巢卵泡的发育和成熟以结构改变为特征,这需要改变细胞或细胞接触所涉及的成分的表达或功能。本研究检查了未成熟促性腺激素和雌激素刺激的大鼠卵巢中卵泡发育,排卵和黄体形成过程中上皮钙粘蛋白(E-cadherin)以及α-和β-catenin的细胞特异性定位和时间表达。免疫组织化学和免疫印迹法证明,在注射马绒毛膜促性腺激素(eCG)之前和之后,E-cadherin在未成熟卵巢的卵泡膜和间质细胞中表达。除位于卵巢内部区域的前窦卵泡以外,未在颗粒细胞中检测到E-钙粘蛋白。排卵hCG后,卵泡膜细胞和间质细胞中E-钙粘蛋白的含量降低。凋亡滤泡的颗粒细胞不表达E-钙粘蛋白。对未成熟大鼠进行长达三天的雌激素处理(二乙基雌二醇),未导致颗粒细胞中E-钙粘蛋白的可测量表达。 α-和β-catenin在所有卵巢区室中表达。在卵泡期,β-catenin的浓度是恒定的,而二乙基雌二醇或hCG处理后的颗粒细胞中α-catenin的含量下降。 hCG后,ca和间质细胞中α-catenin的表达也降低。在卵泡形成的各个阶段,α-和β-catenin存在于大多数卵巢细胞中。因此,连环蛋白具有与钙粘蛋白家族的不同成员缔合并参与细胞骨架结构和细胞内信号传导的调节的潜力。 E-钙粘着蛋白在窦前卵泡颗粒细胞中的有限表达表明在这些卵泡募集到随后的周期中起作用。颗粒细胞中α-catenin的特异性降低以及排卵卵泡中的caca细胞中α-catenin和E-cadherin的降低可能反映了与排卵和黄体化相关的细胞间粘附的某些分子变化。

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