Division of Reproductive Sciences, University of Colorado Anschutz Medical Campus, Aurora, Colorado, USA.
Division of Reproductive Endocrinology and Infertility, University of Colorado Anschutz Medical Campus, Aurora, Colorado, USA.
J Mol Endocrinol. 2018 Apr;60(3):R131-R155. doi: 10.1530/JME-17-0308. Epub 2018 Feb 7.
Follicle-stimulating hormone (FSH) plays fundamental roles in male and female fertility. FSH is a heterodimeric glycoprotein expressed by gonadotrophs in the anterior pituitary. The hormone-specific FSHβ-subunit is non-covalently associated with the common α-subunit that is also present in the luteinizing hormone (LH), another gonadotrophic hormone secreted by gonadotrophs and thyroid-stimulating hormone (TSH) secreted by thyrotrophs. Several decades of research led to the purification, structural characterization and physiological regulation of FSH in a variety of species including humans. With the advent of molecular tools, availability of immortalized gonadotroph cell lines and genetically modified mouse models, our knowledge on molecular mechanisms of FSH regulation has tremendously expanded. Several key players that regulate FSH synthesis, sorting, secretion and action in gonads and extragonadal tissues have been identified in a physiological setting. Novel post-transcriptional and post-translational regulatory mechanisms have also been identified that provide additional layers of regulation mediating FSH homeostasis. Recombinant human FSH analogs hold promise for a variety of clinical applications, whereas blocking antibodies against FSH may prove efficacious for preventing age-dependent bone loss and adiposity. It is anticipated that several exciting new discoveries uncovering all aspects of FSH biology will soon be forthcoming.
卵泡刺激素(FSH)在男性和女性的生育中起着重要作用。FSH 是由垂体前叶的促性腺激素表达的异二聚体糖蛋白。激素特异性的 FSHβ-亚基与共同的α-亚基非共价结合,α-亚基也存在于黄体生成素(LH)中,LH 是另一种由促性腺激素分泌的促性腺激素,以及由甲状腺细胞分泌的促甲状腺激素(TSH)。几十年的研究导致了包括人类在内的多种物种中 FSH 的纯化、结构特征和生理调节。随着分子工具的出现、永生化促性腺激素细胞系的可用性以及基因修饰的小鼠模型,我们对 FSH 调节的分子机制的认识已经大大扩展。在生理环境中,已经确定了几种调节 FSH 在性腺和性腺外组织中的合成、分拣、分泌和作用的关键因子。还发现了新的转录后和翻译后调节机制,为调节 FSH 动态平衡提供了额外的调节层。重组人 FSH 类似物有望在各种临床应用中得到应用,而针对 FSH 的阻断抗体可能对预防与年龄相关的骨丢失和肥胖症有效。预计很快就会有一些令人兴奋的新发现,揭示 FSH 生物学的各个方面。