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首页> 外文期刊>Endocrinology >Bone Morphogenetic Protein 2 Stimulates Noncanonical SMAD2/3 Signaling via the BMP Type 1A Receptor in Gonadotrope-Like Cells: Implications for FSH Synthesis
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Bone Morphogenetic Protein 2 Stimulates Noncanonical SMAD2/3 Signaling via the BMP Type 1A Receptor in Gonadotrope-Like Cells: Implications for FSH Synthesis

机译:骨形态发生蛋白2刺激通过类似性腺的BMP类型1A受体的非规范SMAD2 / 3信号转导:对FSH合成的影响。

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摘要

FSH is an essential regulator of mammalian reproduction. Its synthesis by pituitary gonadotrope cells is regulated by multiple endocrine and paracrine factors, including TGF beta superfamily ligands, such as the activins and inhibins. Activins stimulate FSH synthesis via transcriptional regulation of its beta-subunit gene (Fshb). More recently, bone morphogenetic proteins (BMPs) were shown to stimulate murine Fshb transcription alone and in synergy with activins. BMP2 signals via its canonical type I receptor, BMPR1A (or activin receptor-like kinase 3 [ALK3]), and SMAD1 and SMAD5 to stimulate transcription of inhibitor of DNA binding proteins. Inhibitor of DNA binding proteins then potentiate the actions of activin-stimulated SMAD3 to regulate the Fshb gene in the gonadotrope- like L beta T2 cell line. Here, we report the unexpected observation that BMP2 also stimulates the SMAD2/3 pathway in these cells and that it does so directly via ALK3. Indeed, this novel, noncanonical ALK3 activity is completely independent of ALK4, ALK5, and ALK7, the type I receptors most often associated with SMAD2/3 pathway activation. Induction of the SMAD2/3 pathway by ALK3 is dependent upon its own previous activation by associated type II receptors, which phosphorylate conserved serine and threonine residues in the ALK3 juxtamembrane glycine-serine- rich domain. ALK3 signaling via SMAD3 is necessary for the receptor to stimulate Fshb transcription, whereas its activation of the SMAD1/5/8 pathway alone is insufficient. These data challenge current dogma that ALK3 and other BMP type I receptors signal via SMAD1, SMAD5, and SMAD8 and not SMAD2 or SMAD3. Moreover, they suggest that BMPs and activins may use similar intracellular signaling mechanisms to activate the murine Fshb promoter in immortalized gonadotrope- like cells.
机译:FSH是哺乳动物繁殖的重要调节剂。垂体促性腺激素细胞的合成受多种内分泌和旁分泌因子的调节,包括TGFβ超家族配体,例如激活素和抑制素。激活素通过其β亚基基因(Fshb)的转录调控刺激FSH合成。最近,显示出骨形态发生蛋白(BMP)单独刺激鼠Fshb转录并与激活素协同作用。 BMP2通过其典型的I型受体BMPR1A(或激活素受体样激酶3 [ALK3])以及SMAD1和SMAD5发出信号,以刺激DNA结合蛋白抑制剂的转录。然后,DNA结合蛋白抑制剂可增强激活素刺激的SMAD3调节性腺类似L型T2细胞系Fshb基因的作用。在这里,我们报告了意想不到的发现,即BMP2还会刺激这些细胞中的SMAD2 / 3途径,并且它直接通过ALK3刺激。确实,这种新颖的,非经典的ALK3活性完全独立于ALK4,ALK5和ALK7,它们是最常与SMAD2 / 3途径激活相关的I型受体。 ALK3对SMAD2 / 3途径的诱导取决于其自身先前被相关的II型受体激活,该受体使ALK3近膜富含甘氨酸-丝氨酸的结构域中保守的丝氨酸和苏氨酸残基磷酸化。通过SMAD3传递的ALK3信号对于受体刺激Fshb转录是必需的,而仅靠SMAD1 / 5/8途径的激活不足。这些数据挑战了当前的教条,即ALK3和其他BMP I型受体通过SMAD1,SMAD5和SMAD8而不是通过SMAD2或SMAD3发出信号。此外,他们暗示BMP和激活素可能使用类似的细胞内信号传导机制来激活永生化性腺型类似细胞的鼠Fshb启动子。

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