Prange-Kiel Janine, Jarry Hubertus, Schoen Michael, Kohlmann Patrick, Lohse Christina, Zhou Lepu, Rune Gabriele M
Institute of Anatomy I: Cellular Neurobiology, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.
J Cell Biol. 2008 Jan 28;180(2):417-26. doi: 10.1083/jcb.200707043.
Spine density in the hippocampus changes during the estrus cycle and is dependent on the activity of local aromatase, the final enzyme in estrogen synthesis. In view of the abundant gonadotropin-releasing hormone receptor (GnRH-R) messenger RNA expression in the hippocampus and the direct effect of GnRH on estradiol (E2) synthesis in gonadal cells, we asked whether GnRH serves as a regulator of hippocampal E2 synthesis. In hippocampal cultures, E2 synthesis, spine synapse density, and immunoreactivity of spinophilin, a reliable spine marker, are consistently up-regulated in a dose-dependent manner at low doses of GnRH but decrease at higher doses. GnRH is ineffective in the presence of GnRH antagonists or aromatase inhibitors. Conversely, GnRH-R expression increases after inhibition of hippocampal aromatase. As we found estrus cyclicity of spine density in the hippocampus but not in the neocortex and GnRH-R expression to be fivefold higher in the hippocampus compared with the neocortex, our data strongly suggest that estrus cycle-dependent synaptogenesis in the female hippocampus results from cyclic release of GnRH.
海马体中的脊柱密度在发情周期中会发生变化,并且依赖于局部芳香化酶的活性,芳香化酶是雌激素合成的最后一种酶。鉴于海马体中促性腺激素释放激素受体(GnRH-R)信使核糖核酸表达丰富,以及GnRH对性腺细胞中雌二醇(E2)合成的直接作用,我们探究了GnRH是否作为海马体E2合成的调节因子。在海马体培养物中,低剂量的GnRH能以剂量依赖的方式持续上调E2合成、脊柱突触密度以及可靠的脊柱标记物亲棘蛋白的免疫反应性,但在高剂量时则降低。在存在GnRH拮抗剂或芳香化酶抑制剂的情况下,GnRH无效。相反,海马体芳香化酶受到抑制后,GnRH-R表达增加。由于我们发现海马体而非新皮质中的脊柱密度存在发情周期变化,且海马体中的GnRH-R表达比新皮质高五倍,我们的数据有力地表明,雌性海马体中依赖发情周期的突触形成是由GnRH的周期性释放导致的。