首页> 美国卫生研究院文献>Biology of Reproduction >LH-Induced Steroidogenesis in the Mouse Ovary but Not Testis Requires Matrix Metalloproteinase 2- and 9-Mediated Cleavage of Upregulated EGF Receptor Ligands
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LH-Induced Steroidogenesis in the Mouse Ovary but Not Testis Requires Matrix Metalloproteinase 2- and 9-Mediated Cleavage of Upregulated EGF Receptor Ligands

机译:LH诱导小鼠卵巢中的类固醇生成但不是睾丸需要基质金属蛋白酶2和9介导的EGF受体配体上调的切割。

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摘要

Oocyte maturation and cumulus cell expansion depend on luteinizing hormone (LH)-mediated upregulation of membrane-bound epidermal growth factor (EGF)-like ligands, including amphiregulin, epiregulin, and betacellulin. These ligands then transactivate the EGF receptor (EGFR) after release by matrix metalloproteinases (MMPs). However, direct measurement of released EGF-like ligands or MMPs from granulosa cells has not been formally evaluated, nor has direct identification of responsible MMPs. Here we address these issues by analyzing LH-induced steroidogenesis, which is also MMP and EGFR dependent, in freshly isolated mouse primary granulosa cells. We demonstrate a correlation between amphiregulin and epiregulin mRNA induction and steroid production in LH-treated granulosa cells as well as in ovaries of human chorionic gonadotropin-treated mice. In contrast, LH does not alter Mmp1, Mmp2, Mmp3, Mmp8, Mmp9, or Adam17 mRNA expression. We demonstrate that, in primary mouse granulosa cells, LH triggers release of soluble amphiregulin that correlates with steroid production, both of which are blocked by MMP2/9 inhibition, confirming that MMP2/9 likely regulates LH-induced amphiregulin release and downstream processes. Notably, LH does not alter secretion of MMP2/9 from primary granulosa cells, nor does it modulate MMP activity. These findings indicate that, in the ovary, LH dictates EGFR-mediated processes not by regulating MMPs, but instead by increasing EGF-like ligand availability. In contrast, LH stimulation of primary mouse Leydig cells does not induce EGF-like ligand expression or require MMP2/9 for steroidogenesis, confirming marked differences in LH receptor-induced processes in the testes. Our results suggest that MMP inhibition may be a means of attenuating excess ovarian steroid production in diseases like polycystic ovary syndrome.
机译:卵母细胞的成熟和卵丘细胞的扩张取决于黄体化激素(LH)介导的膜结合表皮生长因子(EGF)样配体(包括双调蛋白,上调蛋白和β细胞蛋白)的上调。然后,这些配体在被基质金属蛋白酶(MMP)释放后使EGF受体(EGFR)活化。但是,尚未正式评估从颗粒细胞释放的EGF样配体或MMP的直接测量,也没有直接鉴定负责任的MMP。在这里,我们通过分析新鲜分离的小鼠原代颗粒细胞中LH诱导的类固醇生成(这也是MMP和EGFR依赖性)来解决这些问题。我们证明了在LH治疗的颗粒细胞以及人类绒毛膜促性腺激素治疗小鼠的卵巢中两性调节蛋白和上调蛋白mRNA诱导与类固醇产生之间的相关性。相反,LH不会改变Mmp1,Mmp2,Mmp3,Mmp8,Mmp9或Adam17 mRNA的表达。我们证明,在原代小鼠颗粒细胞中,LH触发释放与类固醇产生相关的可溶性两性调节蛋白,两者均被MMP2 / 9抑制所阻断,证实MMP2 / 9可能调节LH诱导的两性调节蛋白释放和下游过程。值得注意的是,LH不会改变原代颗粒细胞的MMP2 / 9分泌,也不会调节MMP活性。这些发现表明,在卵巢中,LH不是通过调节MMP而是通过增加EGF样配体的可用性来决定EGFR介导的过程。相反,LH刺激原代小鼠Leydig细胞不会诱导类似EGF的配体表达,也不需要MMP2 / 9进行类固醇生成,从而证实了LH受体在睾丸中诱导过程的显着差异。我们的研究结果表明,在多囊卵巢综合征等疾病中,抑制MMP可能是减轻多余的卵巢类固醇生成的一种方法。

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