Department of Pharmacology and Therapeutics, McGill University, McIntyre Medical Sciences Building, 3655 Promenade Sir-William-Osler, Montréal, Québec, Canada.
Endocrinology. 2010 Nov;151(11):5456-67. doi: 10.1210/en.2010-0605. Epub 2010 Sep 1.
Activins stimulate FSH synthesis and secretion by pituitary gonadotrope cells. Activin A induction of porcine and murine FSHβ (Fshb) gene transcription in immortalized gonadotropes is dependent on homolog of Drosophila mothers against decapentaplegic (SMAD) proteins as well as the forkhead transcription factor L2 (FOXL2). Using both heterologous and homologous cell models, we demonstrate that FOXL2 functionally synergizes with SMAD3/4 to stimulate porcine Fshb promoter-reporter activity. We further show that endogenous FOXL2 and SMAD2/3 physically interact in homologous cells. We identify two composite cis-elements of adjacent FOXL2 and SMAD binding sites in the proximal porcine Fshb promoter that mediate activin A, FOXL2, and SMAD3 actions. FOXL2 can bind these elements independently of SMADs, whereas SMAD3/4 binding requires high-affinity FOXL2 binding. Conversely, FOXL2 alone is insufficient to regulate Fshb transcription and requires SMADs to induce promoter activity. Collectively, our data suggest a model in which activins stimulate formation and nuclear accumulation of SMAD3/4 complexes, which interact with FOXL2 bound to at least two proximal promoter elements. This association stabilizes SMAD3/4 binding to adjacent SMAD binding elements. SMAD-FOXL2 complexes then mediate activation of transcription through a currently unknown mechanism. Conservation of one of the two composite cis-elements suggests that this may form part of a general mechanism whereby activins regulate Fshb subunit transcription and FSH synthesis.
激活素通过垂体促性腺细胞刺激 FSH 的合成和分泌。激活素 A 诱导猪和鼠的 FSHβ(Fshb)基因转录在永生化的促性腺激素细胞中依赖于果蝇抗 decapentaplegic(SMAD)蛋白的同源物以及叉头转录因子 L2(FOXL2)。使用异源和同源细胞模型,我们证明 FOXL2 与 SMAD3/4 协同作用以刺激猪 Fshb 启动子报告基因活性。我们进一步表明,内源性 FOXL2 和 SMAD2/3 在同源细胞中物理相互作用。我们鉴定了近端猪 Fshb 启动子中相邻 FOXL2 和 SMAD 结合位点的两个复合顺式元件,这些元件介导激活素 A、FOXL2 和 SMAD3 的作用。FOXL2 可以独立于 SMADs 结合这些元件,而 SMAD3/4 结合需要高亲和力的 FOXL2 结合。相反,FOXL2 本身不足以调节 Fshb 转录,并且需要 SMADs 诱导启动子活性。总的来说,我们的数据表明,激活素刺激 SMAD3/4 复合物的形成和核积累,该复合物与至少两个近端启动子元件结合的 FOXL2 相互作用。这种关联稳定了 SMAD3/4 与相邻 SMAD 结合元件的结合。SMAD-FOXL2 复合物然后通过目前未知的机制介导转录的激活。两个复合顺式元件之一的保守性表明,这可能是激活素调节 Fshb 亚基转录和 FSH 合成的一般机制的一部分。