首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Heterodimers and homodimers of inhibin subunits have different paracrine action in the modulation of luteinizing hormone-stimulated androgen biosynthesis.
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Heterodimers and homodimers of inhibin subunits have different paracrine action in the modulation of luteinizing hormone-stimulated androgen biosynthesis.

机译:抑制素亚基的异二聚体和同二聚体在促黄体激素刺激的雄激素生物合成中具有不同的旁分泌作用。

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摘要

Inhibin, a gonadal hormone capable of preferential suppression of pituitary follicle-stimulating hormone (FSH) secretion, has recently been purified. The major form of this protein is an alpha beta heterodimer encoded by two separate genes. In contrast to the FSH-suppressing action of the alpha beta heterodimer, the beta beta homodimer stimulates FSH secretion. Luteinizing hormone (LH)-secreting pituitary cells and gonadal androgen-producing cells have long been shown to form a closed-loop feedback axis. Based on recent studies demonstrating the FSH stimulation of inhibin biosynthesis by ovarian granulosa and testis Sertoli cells, an additional closed-loop feedback axis exists between pituitary FSH- and gonadal inhibin-producing cells. Because uncharacterized Sertoli cell factors have been suggested to either stimulate or inhibit androgen production by testicular Leydig cells, we have tested the intragonadal paracrine actions of heterodimers and homodimers of inhibin subunits. In primary cultures of testis cells, the alpha beta heterodimer of inhibin enhances Leydig cell androgen biosynthesis stimulated by LH, whereas the beta beta homodimer suppresses androgen production. Furthermore, similar modulatory actions of inhibin-related proteins were found in cultured ovarian theca-interstitial cells and theca explants treated with LH. In contrast, treatment with the inhibin-related proteins alone did not affect gonadal steroidogenesis. Our data indicate that the inhibin-related gene products synthesized by Sertoli and granulosa cells may form heterodimers or homodimers to serve as intragonadal paracrine signals in the modulation of LH-stimulated androgen biosynthesis and allow cross-communication between the two feedback loops.
机译:抑制素是一种能够优先抑制垂体促卵泡激素(FSH)分泌的性腺激素,最近已被纯化。该蛋白的主要形式是由两个独立的基因编码的αβ异二聚体。与α-β异二聚体的FSH抑制作用相反,β-β同源二聚体刺激FSH分泌。长期以来,分泌促黄体激素(LH)的垂体细胞和生成性腺雄激素的细胞已形成闭环反馈轴。根据最近的研究表明卵巢颗粒和睾丸支持细胞刺激FSH抑制素的生物合成,在垂体FSH和性腺抑制素产生细胞之间存在一个附加的闭环反馈轴。由于已提出未表征的支持细胞因子可刺激或抑制睾丸Leydig细胞产生雄激素,因此我们测试了抑制素亚基异二聚体和同二聚体的性腺内分泌作用。在睾丸细胞的原代培养中,抑制素的αβ异源二聚体增强了LH刺激的Leydig细胞雄激素的生物合成,而ββ同型二聚体抑制了雄激素的产生。此外,在LH处理的卵巢卵泡间质细胞和卵泡外植体中发现了抑制素相关蛋白的类似调节作用。相反,仅用抑制素相关蛋白进行治疗并不会影响性腺类固醇生成。我们的数据表明,由Sertoli和颗粒细胞合成的与抑制素相关的基因产物可能形成异二聚体或同二聚体,在调节LH刺激的雄激素生物合成中充当性腺内分泌旁分泌信号,并允许两个反馈环之间的交叉通讯。

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