首页> 外文期刊>Endocrinology >A covalently dimerized recombinant human bone morphogenetic protein-15 variant identifies bone morphogenetic protein receptor type 1B as a key cell surface receptor on ovarian granulosa cells.
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A covalently dimerized recombinant human bone morphogenetic protein-15 variant identifies bone morphogenetic protein receptor type 1B as a key cell surface receptor on ovarian granulosa cells.

机译:共价二聚化的重组人骨形态发生蛋白-15变异体将1B型骨形态发生蛋白受体识别为卵巢颗粒细胞上的关键细胞表面受体。

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摘要

Genetic studies have identified bone morphogenetic protein-15 (BMP15) as an essential regulator of female fertility in humans and in sheep. Oocyte-derived BMP15 is a noncovalently linked dimeric growth factor mediating its effects to ovarian somatic cells in a paracrine manner. Although receptor ectodomains capable of binding BMP15 have previously been reported, no cell surface receptor complex involved in BMP15 signaling has previously been characterized. Here we have expressed and purified recombinant human BMP15 noncovalent and covalent dimer variants. The biological effects of these BMP15 variants were assessed in cultured human granulosa-luteal cells or COV434 granulosa cell tumor cells using BMP-responsive transcriptional reporter assays and an inhibin B ELISA. Biochemical characterization of ligand-receptor interactions was performed with affinity-labeling experiments using [(125)I]iodinated BMP15 variants. Both ligand variants were shown to form homodimers and to stimulate Smad1/5/8 signaling and inhibin B production in human granulosa cells in a similar manner. [(125)I]Iodination of both ligands was achieved, but only the covalent dimer variant retained receptor binding capacity. The [(125)I]BMP15(S356C) variant bound preferentially to endogenous BMP receptor 1B (BMPR1B) and BMPR2 receptors on COV434 cells. Binding experiments in COS cells with overexpression of these receptors confirmed that the [(125)I]BMP15(S356C) variant binds to BMPR1B and BMPR2 forming the BMP15 signaling complex. The results provide the first direct evidence in any species on the identification of specific cell surface receptors for a member of the GDF9/BMP15 subfamily of oocyte growth factors. The fact that BMP15 uses preferentially BMPR1B as its type I receptor suggests an important role for the BMPR1B receptor in human female fertility. The result is well in line with the demonstration of ovarian failure in a recently reported human subject with a homozygous BMPR1B loss-of-function mutant.
机译:遗传学研究已经确定骨形态发生蛋白15(BMP15)是人类和绵羊女性生育能力的重要调节剂。卵母细胞衍生的BMP15是非共价连接的二聚体生长因子,以旁分泌方式介导其对卵巢体细胞的作用。尽管先前已经报道了能够结合BMP15的受体胞外域,但是先前尚未鉴定出参与BMP15信号传导的细胞表面受体复合物。在这里,我们已经表达和纯化了重组人BMP15非共价和共价二聚体变体。使用BMP响应转录报告基因测定法和抑制素B ELISA,在培养的人颗粒-黄体细胞或COV434颗粒细胞肿瘤细胞中评估了这些BMP15变体的生物学效应。使用[(125)I]碘化的BMP15变体,通过亲和标记实验对配体-受体相互作用进行生化表征。两种配体变体均显示形成同型二聚体并以相似的方式刺激人颗粒细胞中的Smad1 / 5/8信号传导和抑制素B的产生。 [(125)I]实现了两个配体的碘化,但是只有共价二聚体变体保留了受体结合能力。 [(125)I] BMP15(S356C)变体优先结合COV434细胞上的内源性BMP受体1B(BMPR1B)和BMPR2受体。在具有这些受体过量表达的COS细胞中的结合实验证实[[125] I] BMP15(S356C)变体与BMPR1B和BMPR2结合,形成BMP15信号复合物。该结果为任何种类的卵母细胞生长因子GDF9 / BMP15亚家族成员的特定细胞表面受体的鉴定提供了第一个直接证据。 BMP15优先使用BMPR1B作为其I型受体这一事实表明BMPR1B受体在人类女性生育力中具有重要作用。该结果与最近报道的具有纯合的BMPR1B功能丧失突变体的人类受试者的卵巢衰竭的显示非常吻合。

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