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TGF-beta Superfamily Regulation of Follicle-Stimulating Hormone Synthesis by Gonadotrope Cells: Is There a Role for Bone Morphogenetic Proteins?

机译:TGF-β超家长调节卵泡刺激激素合成的促进剂细胞:骨形态发生蛋白有什么作用吗?

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摘要

Bone morphogenetic proteins (BMPs) are pleiotropic ligands in the TGF-beta superfamily. In the early to mid-2000s, several BMPs, including BMP2, were shown to regulate FSH synthesis alone and in synergy with activins in immortalized gonadotrope-like cell lines and primary pituitary cultures. Activins are also TGF-beta family members, which were identified and named based on their abilities to stimulate FSH production selectively. Mechanistic analyses suggested that BMP2 promoted expression of the FSH beta subunit gene (Fshb) via at least two nonmutually exclusive mechanisms. First, BMP2 stimulated the production of the inhibitor of DNA-binding proteins 1, 2, and 3 (Id1, Id2, and Id3), which potentiated the stimulatory actions of homolog of Drosophila mothers against decapentaplegic 3 (SMAD3) on the Fshb promoter. SMAD3 is an intracellular signaling protein that canonically mediates the actions of activins and is an essential regulator of Fshb production in vitro and in vivo. Second, BMP2 was shown to activate SMAD3-dependent signaling via its canonical type IA receptor, BMPR1A (also known as ALK3). This was a surprising result, as ALK3 conventionally activates distinct SMAD proteins. Although these initial results were compelling, they were challenged by contemporaneous and subsequent observations. For example, inhibitors of BMP signaling did not specifically impair FSH production in cultured pituitary cells. Of perhaps greater significance, mice lacking ALK3 in gonadotrope cells produced FSH normally. Therefore, the physiological role of BMPs in FSH synthesis in vivo is presently uncertain.
机译:骨形态发生蛋白(BMP)是TGF-β超家族中的脂肪酸配体。在2000年代早期到2000年代中期,显示了几种BMP,包括BMP2,单独调节FSH合成,并在不朽的促性腺素样细胞系和初级垂体培养物中与活生素进行协同作用。 Activins也是TGF-Beta家族成员,基于选择性地刺激FSH生产的能力来确定和命名。机械分析表明,BMP2通过至少两种非造型的机制促进了FSHβ亚基基因(FSHB)的表达。首先,BMP2刺激了DNA结合蛋白1,2和3(ID1,ID2和ID3)的抑制剂的产生,其调节了果蝇母亲对FSHB启动子对脱象3(SMAD3)的同源物的刺激作用。 Smad3是一种细胞内信号传导蛋白,其致正常介导Activins的作用,是体外和体内FSHB生产的必要调节因子。其次,显示BMP2通过其规范型IA受体,BMPR1A(也称为ALK3)激活SMAD3依赖性信号传导。这是一个令人惊讶的结果,因为Alk3常规激活明显的Smad蛋白。虽然这些初步结果引人注目,但它们受到同期和随后的观察的挑战。例如,BMP信号传导的抑制剂在培养的垂体细胞中没有特别损害FSH生产。可能具有更大的意义,缺乏Alk3在促性腺疏水细胞中的小鼠通常生产FSH。因此,BMP在体内FSH合成中的生理作用目前不确定。

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  • 来源
    《Endocrinology》 |2019年第3期|共9页
  • 作者单位

    McGill Univ Ctr Res Reprod &

    Dev Dept Pharmacol &

    Therapeut Montreal PQ H3G 1Y6 Canada;

    McGill Univ Ctr Res Reprod &

    Dev Dept Pharmacol &

    Therapeut Montreal PQ H3G 1Y6 Canada;

    McGill Univ Ctr Res Reprod &

    Dev Dept Pharmacol &

    Therapeut Montreal PQ H3G 1Y6 Canada;

    McGill Univ Ctr Res Reprod &

    Dev Dept Pharmacol &

    Therapeut Montreal PQ H3G 1Y6 Canada;

    McGill Univ Ctr Res Reprod &

    Dev Dept Pharmacol &

    Therapeut Montreal PQ H3G 1Y6 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 内分泌腺疾病及代谢病;
  • 关键词

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