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促性腺激素抑制激素通过抑制 LβT2 细胞中的 AC/cAMP/PKA 依赖性 ERK 通路抑制 GnRH 诱导的促性腺激素亚基基因转录。

Gonadotropin-inhibitory hormone inhibits GnRH-induced gonadotropin subunit gene transcriptions by inhibiting AC/cAMP/PKA-dependent ERK pathway in LβT2 cells.

机构信息

Laboratory of Integrative Brain Sciences, Department of Biology, Waseda University, Center for Medical Life Science of Waseda University, 2-2 Wakamatsu-cho, Shinjuku-ku, Tokyo 162-8480, Japan.

出版信息

Endocrinology. 2012 May;153(5):2332-43. doi: 10.1210/en.2011-1904. Epub 2012 Feb 28.

Abstract

A neuropeptide that directly inhibits gonadotropin secretion from the pituitary was discovered in quail and named gonadotropin-inhibitory hormone (GnIH). The presence and functional roles of GnIH orthologs, RF-amide-related peptides (RFRP), that possess a common C-terminal LPXRF-amide (X = L or Q) motif have also been demonstrated in mammals. GnIH orthologs inhibit gonadotropin synthesis and release by acting on pituitary gonadotropes and GnRH neurons in the hypothalamus via its receptor (GnIH receptor). It is becoming increasingly clear that GnIH is an important hypothalamic neuropeptide controlling reproduction, but the detailed signaling pathway mediating the inhibitory effect of GnIH on target cells is still unknown. In the present study, we investigated the pathway of GnIH cell signaling and its possible interaction with GnRH signaling using a mouse gonadotrope cell line, LβT2. First, we demonstrated the expression of GnIH receptor mRNA in LβT2 cells by RT-PCR. We then examined the inhibitory effects of mouse GnIH orthologs [mouse RFRP (mRFRP)] on GnRH-induced cell signaling events. We showed that mRFRP effectively inhibited GnRH-induced cAMP signaling by using a cAMP-sensitive reporter system and measuring cAMP levels, indicating that mRFRP function as an inhibitor of adenylate cyclase. We further showed that mRFRP inhibited GnRH-stimulated ERK phosphorylation, and this effect was mediated by the inhibition of the protein kinase A pathway. Finally, we demonstrated that mRFRP inhibited GnRH-stimulated gonadotropin subunit gene transcriptions and also LH release. Taken together, the results indicate that mRFRP function as GnIH to inhibit GnRH-induced gonadotropin subunit gene transcriptions by inhibiting adenylate cyclase/cAMP/protein kinase A-dependent ERK activation in LβT2 cells.

摘要

一种直接抑制垂体促性腺激素分泌的神经肽在鹌鹑中被发现,并被命名为促性腺激素抑制激素(GnIH)。在哺乳动物中,也发现了具有共同 C 末端 LPXRF-酰胺(X = L 或 Q)基序的 GnIH 同源物,即 RF-酰胺相关肽(RFRP),其存在和功能作用也得到了证实。GnIH 同源物通过其受体(GnIH 受体)作用于垂体促性腺细胞和下丘脑 GnRH 神经元,抑制促性腺激素的合成和释放。越来越明显的是,GnIH 是一种控制生殖的重要下丘脑神经肽,但介导 GnIH 对靶细胞抑制作用的详细信号通路仍不清楚。在本研究中,我们使用小鼠促性腺细胞系 LβT2 研究了 GnIH 细胞信号通路及其与 GnRH 信号通路的可能相互作用。首先,我们通过 RT-PCR 证明了 GnIH 受体 mRNA 在 LβT2 细胞中的表达。然后,我们研究了小鼠 GnIH 同源物(小鼠 RFRP[mRFRP])对 GnRH 诱导的细胞信号事件的抑制作用。我们表明,mRFRP 通过使用 cAMP 敏感报告系统测量 cAMP 水平,有效地抑制了 GnRH 诱导的 cAMP 信号,表明 mRFRP 作为腺苷酸环化酶的抑制剂发挥作用。我们进一步表明,mRFRP 抑制 GnRH 刺激的 ERK 磷酸化,并且这种作用是通过抑制蛋白激酶 A 途径介导的。最后,我们证明 mRFRP 抑制 GnRH 刺激的促性腺激素亚基基因转录和 LH 释放。总之,这些结果表明,mRFRP 作为 GnIH 发挥作用,通过抑制 LβT2 细胞中腺苷酸环化酶/cAMP/蛋白激酶 A 依赖性 ERK 激活来抑制 GnRH 诱导的促性腺激素亚基基因转录。

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