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首页> 外文期刊>Molecular and Cellular Endocrinology >Regulatory role of kit ligand-c-kit interaction and oocyte factors in steroidogenesis by rat granulosa cells
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Regulatory role of kit ligand-c-kit interaction and oocyte factors in steroidogenesis by rat granulosa cells

机译:试剂盒配体-c-kit相互作用和卵母细胞因子在大鼠颗粒细胞类固醇生成中的调控作用

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Although kit ligand (KL)-c-kit interaction is known to be critical for oogenesis and folliculogenesis, its role in ovarian steroidogenesis has yet to be elucidated. We studied the impact of KL-c-kit interaction in regulation of steroidogenesis using rat oocyte/granulosa cell co-culture. In the presence of oocytes, soluble KL suppressed FSH-induced estradiol production and aromatase mRNA expression without affecting FSH-induced progesterone production. The KL effect on steroidogenesis was interrupted by an anti-c-kit neutralizing antibody, suggesting that KL-c-kit interaction is involved in suppression of estrogen by granulosa cells through oocyte c-kit action. The cAMP-PKA pathway activity was not directly involved in the estrogen regulation by KL-c-kit action. It was of note that KL treatment increased the expression levels of oocyte-derived FGF-8, GDF-9 and BMP-6, while it reduced the expression levels of oocyte-derived BMP-15 in the oocyte-granulosa cell co-culture. Given the findings that FGF-8, but not GDF-9, BMP-6 or -15, suppressed FSH-induced estrogen production by granulosa cells, oocyte-derived FGF-8 is linked to suppression of FSH-induced estrogen production through the KL-c-kit interaction. Furthermore, the suppression of FSH-induced estrogen production by KL in the co-culture was reversed by a FGF receptor kinase inhibitor and the effect of the inhibitor was enhanced in combination with extracellular-domain protein of BMPRII, which interferes with BMP-15 and GDF-9 activities. Thus, the actions of endogenous oocyte factors including FGF-8 and BMP-15/GDF-9 were involved in the KL activity that inhibited FSH-induced estradiol production. Collectively, the results indicate that KL-c-kit interaction plays a role in estrogenic regulation through oocyte-granulosa cell communication.
机译:尽管已知试剂盒配体(KL)-c-kit相互作用对于卵子发生和卵泡形成至关重要,但尚未阐明其在卵巢类固醇生成中的作用。我们研究了KL-c-kit相互作用对使用大鼠卵母细胞/颗粒细胞共培养的类固醇生成的调节作用。在卵母细胞的存在下,可溶性KL抑制了FSH诱导的雌二醇生成和芳香化酶mRNA表达,而不影响FSH诱导的孕激素生成。 KL对类固醇生成的作用被抗c-kit中和抗体打断了,表明KL-c-kit相互作用涉及通过卵母细胞c-kit的作用抑制颗粒细胞抑制雌激素。 cAMP-PKA途径的活性并不直接通过KL-c-kit作用参与雌激素的调节。值得注意的是,在卵母细胞-颗粒细胞共培养中,KL处理增加了卵母细胞衍生的FGF-8,GDF-9和BMP-6的表达水平,同时降低了卵母细胞衍生的BMP-15的表达水平。鉴于这些发现,FGF-8而非GDF-9,BMP-6或-15抑制了颗粒细胞FSH诱导的雌激素产生,卵母细胞衍生的FGF-8与通过KL抑制FSH诱导的雌激素产生有关-c-kit交互。此外,FGF受体激酶抑制剂逆转了共培养物中KL对FSH诱导的雌激素产生的抑制作用,并且与BMPRII的胞外域蛋白联合使用可增强该抑制剂的作用,后者会干扰BMP-15和GDF-9活动。因此,内源性卵母细胞因子(包括FGF-8和BMP-15 / GDF-9)的作用与抑制FSH诱导的雌二醇生成的KL活性有关。总的来说,结果表明KL-c-kit相互作用通过卵母细胞-颗粒细胞的通讯在雌激素调节中起作用。

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