Department of Reproductive Medicine, Center for Reproductive Science and Medicine, University of California, San Diego, 9500 Gilman Drive, La Jolla, California 92093-0674, USA.
Endocrinology. 2010 Oct;151(10):4882-93. doi: 10.1210/en.2009-1483. Epub 2010 Aug 4.
As the regulator of pituitary reproductive hormone synthesis, the hypothalamic neuropeptide GnRH is the central regulator of reproduction. A hallmark of GnRH action is the differential control of gene expression in pituitary gonadotropes through varied pulsatile stimulation. Among other signaling events, GnRH activation of the ERK family of MAPKs plays a significant role in the transcriptional regulation of the luteinizing hormone β-subunit gene and regulation of cap-dependent translation. We evaluated the ERK response to different GnRH pulse amplitudes in the gonadotrope cell line LβT2. We found that low-amplitude stimulation with GnRH invokes a rapid and transient ERK activation, whereas high-amplitude stimulation invokes a prolonged activation specifically in the cytoplasm fraction of LβT2 cells. Nuclear and cytoplasmic targets of ERK, Ets-like gene 1, and eukaryotic initiation factor 4E, respectively, are similarly activated. Feedback control of ERK activation occurs mainly through the dual-specificity protein phosphatases (DUSPs). DUSP1 is localized to the nucleus in LβT2 cells but DUSP4, another member implicated in GnRH feedback, exists in both the nucleus and cytoplasm. Manipulation of nuclear DUSP activity through overexpression or knockdown of Dusp1 modulates the ERK response to low and high GnRH pulse amplitudes and activation of the Lhb promoter. Dusp1 overexpression abolishes sustained ERK activation and inhibits Lhb promoter activity induced by high amplitude pulses. Conversely, Dusp1 knockdown enhances ERK activation by low-amplitude stimulation and increases stimulation of Lhb promoter activity. We conclude that DUSP1 feedback activity modulates ERK activation and the transcriptional response to GnRH.
作为垂体生殖激素合成的调节剂,下丘脑神经肽 GnRH 是生殖的中枢调节剂。GnRH 作用的一个标志是通过不同的脉冲刺激对垂体促性腺激素细胞中的基因表达进行差异控制。在其他信号事件中,GnRH 激活 ERK 家族的 MAPKs 在黄体生成素 β 亚基基因的转录调节和调节帽依赖性翻译中发挥重要作用。我们评估了 ERK 对 LβT2 促性腺细胞瘤系中不同 GnRH 脉冲幅度的反应。我们发现,低幅度刺激 GnRH 会引起快速而短暂的 ERK 激活,而高幅度刺激则会特异性地引起 LβT2 细胞细胞质部分的延长激活。ERK 的核和细胞质靶标,Ets 样基因 1 和真核起始因子 4E,分别被类似地激活。ERK 激活的反馈控制主要通过双特异性蛋白磷酸酶 (DUSPs) 发生。DUSP1 在 LβT2 细胞中定位于核内,但另一个涉及 GnRH 反馈的成员 DUSP4 存在于核内和细胞质中。通过过表达或敲低 Dusp1 对核 DUSP 活性的操纵调节了对低和高 GnRH 脉冲幅度的 ERK 反应和 Lhb 启动子的激活。DUSP1 过表达会消除持续的 ERK 激活并抑制高幅度脉冲诱导的 Lhb 启动子活性。相反,Dusp1 敲低增强了低幅度刺激的 ERK 激活并增加了 Lhb 启动子活性的刺激。我们得出结论,DUSP1 反馈活性调节 ERK 激活和 GnRH 诱导的转录反应。