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FSH 聚糖结构在调节支持细胞抑制素产生中的作用。

Role of FSH glycan structure in the regulation of Sertoli cell inhibin production.

机构信息

Centro de Investigaciones Endocrinológicas 'Dr. Cesar Bergadá' (CEDIE-CONICET) Hospital de Niños 'R. Gutiérrez', Buenos Aires, Argentina.

出版信息

Reproduction. 2017 Nov;154(5):711-721. doi: 10.1530/REP-17-0393. Epub 2017 Aug 30.

DOI:10.1530/REP-17-0393
PMID:28855248
Abstract

Variations in follicle-stimulating hormone (FSH) carbohydrate composition and structure are associated with important structural and functional changes in Sertoli cells (SCs) during sexual maturation. The aim of the present study was to investigate the impact of FSH oligosaccharide structure and its interaction with gonadal factors on the regulation of monomeric and dimeric inhibin production at different maturation stages of the SC. Recombinant human FSH (rhFSH) glycosylation variants were isolated according to their sialylation degree (AC and BA) and complexity of oligosaccharides (CO and HY). Native rhFSH stimulated inhibin α-subunit (Pro-αC) but did not show any effect on inhibin B (INHB) production in immature SCs isolated from 8-day-old rats. Activin A stimulated INHB and had a synergistic effect on FSH to stimulate Pro-αC. The less acidic/sialylated rhFSH charge analogues, BA, were the only charge analogue mix that stimulated INHB as well as the most potent for Pro-αC production. Native rhFSH stimulated both Pro-αC and INHB in SCs at a more advanced maturation stage, isolated from 20-day-old rats. In these cells, all rhFSH glycosylation variants increased INHB and Pro-αC production, even in the presence of growth factors. The BA preparation exerted a more marked stimulatory effect on INHB and Pro-αC than the AC. Glycoforms bearing high mannose and hybrid-type oligosaccharides, HY, stimulated INHB and Pro-αC more effectively than those bearing complex oligosaccharides, CO, even in the presence of gonadal growth factors. These findings demonstrate the modulatory effect of FSH oligosaccharide structure on the regulation of inhibin production in the male gonad.

摘要

卵泡刺激素 (FSH) 碳水化合物组成和结构的变化与性成熟过程中支持细胞 (SCs) 的重要结构和功能变化有关。本研究旨在探讨 FSH 寡糖结构及其与性腺因子的相互作用对调节 SC 不同成熟阶段单体和二聚体抑制素产生的影响。根据唾液酸化程度 (AC 和 BA) 和寡糖复杂性 (CO 和 HY) 分离重组人 FSH (rhFSH) 糖基化变体。天然 rhFSH 刺激抑制素 α 亚基 (Pro-αC),但对从 8 天大的大鼠分离的未成熟 SC 中抑制素 B (INHB) 的产生没有任何影响。激活素 A 刺激 INHB,并与 FSH 协同刺激 Pro-αC。酸性/唾液酸化程度较低的 rhFSH 电荷类似物 BA 是唯一刺激 INHB 以及最有效的刺激 Pro-αC 产生的电荷类似物混合物。天然 rhFSH 刺激来自 20 天大的大鼠的 SC 中 Pro-αC 和 INHB 的产生。在这些细胞中,所有 rhFSH 糖基化变体均增加 INHB 和 Pro-αC 的产生,即使存在生长因子也是如此。BA 制剂对 INHB 和 Pro-αC 的刺激作用比 AC 更明显。带有高甘露糖和杂合型寡糖的糖型比带有复杂寡糖的糖型更有效地刺激 INHB 和 Pro-αC,即使存在性腺生长因子也是如此。这些发现表明 FSH 寡糖结构对调节男性性腺中抑制素产生具有调节作用。

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Hormonal Regulation of Follicle-Stimulating Hormone Glycosylation in Males.男性促卵泡激素糖基化的激素调节
Front Endocrinol (Lausanne). 2019 Jan 29;10:17. doi: 10.3389/fendo.2019.00017. eCollection 2019.