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Concanavalin-A induces granulosa cell death and inhibits fsh-mediated follicular growth and ovarian maturation in female rats

机译:伴刀豆球蛋白A诱导雌性大鼠颗粒细胞死亡并抑制fsh介导的卵泡生长和卵巢成熟

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Reproductive success stems from a finely regulated balance between follicular maturation and atresia, in which the role of carbohydrate structure is poorly understood. Here, we describe for the first time a fraction of purified recombinant human FSH that is capable of bringing about the cell death of granulosa cells and preventing follicular maturation in a rat model. Further analysis by mass spectrometry revealed the presence of the lectin Concanavalin-A (Con-A) within this fraction of recombinant FSH. Using both the fractionated FSH and Con-A, the observed cell death was predominantly located to the granulosa cells. Ex vivo culture of rat follicles demonstrated that follicle degeneration occurred and resulted in the release of a denuded and deteriorated oocyte. Moreover, in vivo experiments confirmed an increase in atresia and a corresponding reduction confined to follicle in early antral stage. As a mechanism of action, Con-A reduces ovarian proliferation, Von Willebrand staining, and angiogenesis. Based on the observation that Con-A may induce granulosa cell death followed by follicle death, our results further demonstrate that follicular carbohydrate moiety is changing under the influence of FSH, which may allow a carbohydrate- binding lectin to increase granulosa cell death. The physiological consequences of circulating lectin-like molecules remain to be determined. However, our results suggest a potential exploitation of carbohydrate binding in fertility and ovarian cancer treatment. This work may shed light on a key role of carbohydrates in the still obscure physiological process of follicular selection and atresia.
机译:生殖成功来自卵泡成熟和闭锁之间的良好调节平衡,其中对碳水化合物结构的作用了解甚少。在这里,我们首次描述了能够在大鼠模型中引起颗粒细胞死亡并阻止卵泡成熟的一部分纯化的重组人FSH。通过质谱的进一步分析揭示了在重组FSH的该级分中存在凝集素伴刀豆球蛋白A(Con-A)。使用分馏的FSH和Con-A,观察到的细胞死亡主要位于颗粒细胞上。大鼠卵泡的离体培养表明,卵泡发生变性并导致裸露和变质的卵母细胞释放。此外,体内实验证实了在早期肛门期闭锁的增加和相应的减少仅限于卵泡。作为一种作用机制,Con-A可以减少卵巢增殖,Von Willebrand染色和血管生成。基于观察到Con-A可能导致颗粒细胞死亡继之以卵泡死亡,我们的结果进一步表明,卵泡碳水化合物部分在FSH的影响下发生了变化,这可能使结合碳水化合物的凝集素增加了颗粒细胞死亡。循环凝集素样分子的生理后果仍有待确定。但是,我们的结果表明,在生育和卵巢癌治疗中碳水化合物结合的潜在利用。这项工作可能阐明碳水化合物在仍然模糊的滤泡选择和闭锁性生理过程中的关键作用。

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