School of Life Sciences and Centre for Cell and Development Biology, The Chinese University of Hong Kong, Shatin, New Territories, Hong Kong, China.
Gen Comp Endocrinol. 2013 Jan 15;181:288-94. doi: 10.1016/j.ygcen.2012.07.032. Epub 2012 Oct 1.
Epidermal growth factor (egf) is expressed in the zebrafish oocyte whereas its receptor EGF receptor (egfr) is expressed in the somatic follicle layer, strongly suggesting a role for Egf in the intrafollicular paracrine communication that mediates an oocyte-to-follicle cell signaling pathway. However, the exact function of Egf in the follicle remains largely unknown. The present study aimed to explore the possible role of Egf in regulating gonadotropin receptors (fshr and lhcgr) in cultured zebrafish follicle cells. EGF down-regulated lhcgr expression dose-dependently in a biphasic manner with significant effect observed at 1.5 and 24 h. The effect was mediated via Egfr on the follicle cells. On the contrary, EGF also tended to decrease fshr expression at 1.5 h but it appeared to up-regulate fshr at 24 h. The EGF suppression of lhcgr expression was functionally relevant as pre-exposure to EGF reduced the follicle cell responsiveness to LH/hCG. We have recently reported that estradiol (E2) strongly stimulated lhcgr expression in the zebrafish ovary. In the current study, we further demonstrated that EGF and other EGF family members, heparin-binding EGF-like growth factor (HBEGF), transforming growth factor α (TGFα) and betacellulin (BTC), all reduced basal and E2-induced lhcgr expression. This study provides evidence for a potential paracrine role of Egf and its related peptides in the zebrafish follicle. The oocyte-derived EGF family ligands may actively control the process of follicle growth and maturation by differentially controlling the expression of fshr and lhcgr in the follicle cells in a paracrine manner.
表皮生长因子 (EGF) 在斑马鱼卵母细胞中表达,而其受体 EGF 受体 (EGFR) 在体滤泡层中表达,强烈表明 EGF 在介导卵母细胞-滤泡细胞信号通路的卵泡内旁分泌通讯中发挥作用。然而,EGF 在卵泡中的确切功能在很大程度上仍不清楚。本研究旨在探讨 EGF 在调节培养的斑马鱼滤泡细胞中的促性腺激素受体 (FSHR 和 LHCGR) 中的可能作用。EGF 以双相方式剂量依赖性地下调 LHCGR 表达,在 1.5 和 24 h 时观察到显著效果。该作用是通过滤泡细胞上的 EGFR 介导的。相反,EGF 也似乎在 1.5 h 时降低 FSHR 表达,但似乎在 24 h 时上调 FSHR 表达。EGF 对 LHCGR 表达的抑制作用具有功能相关性,因为预先暴露于 EGF 可降低滤泡细胞对 LH/hCG 的反应性。我们最近报道雌二醇 (E2) 强烈刺激斑马鱼卵巢中的 LHCGR 表达。在本研究中,我们进一步证明 EGF 和其他 EGF 家族成员,肝素结合 EGF 样生长因子 (HBEGF)、转化生长因子 α (TGFα) 和β细胞素 (BTC),均可降低基础和 E2 诱导的 LHCGR 表达。这项研究为 EGF 及其相关肽在斑马鱼卵泡中的潜在旁分泌作用提供了证据。卵母细胞衍生的 EGF 家族配体可能通过以旁分泌方式差异调节滤泡细胞中 FSHR 和 LHCGR 的表达,主动控制卵泡生长和成熟的过程。