Kretz Oliver, Fester Lars, Wehrenberg Uwe, Zhou Lepu, Brauckmann Silke, Zhao Shanting, Prange-Kiel Janine, Naumann Thomas, Jarry Hubertus, Frotscher Michael, Rune Gabriele M
Institute of Anatomy and Cell Biology, Albert-Ludwigs-Universität Freiburg, D-79104 Freiburg, Germany.
J Neurosci. 2004 Jun 30;24(26):5913-21. doi: 10.1523/JNEUROSCI.5186-03.2004.
Estrogens have been described to induce synaptogenesis in principal neurons of the hippocampus and have been shown to be synthesized and released by exactly these neurons. Here, we have focused on the significance of local estrogen synthesis on spine synapse formation and the synthesis of synaptic proteins. To this end, we reduced hippocampal estrogen synthesis in vitro with letrozole, a reversible nonsteroidal aromatase inhibitor. In hippocampal slice cultures, letrozole treatment resulted in a dose-dependent decrease of 17beta-estradiol as quantified by RIA. This was accompanied by a significant decrease in the density of spine synapses and in the number of presynaptic boutons. Quantitative immunohistochemistry revealed a downregulation of spinophilin, a marker of dendritic spines, and synaptophysin, a protein of presynaptic vesicles, in response to letrozole. Surprisingly, no increase in the density of spines, boutons, and synapses and in spinophilin expression was seen after application of estradiol to the medium of cultures that had not been treated with letrozole. However, synaptophysin expression was upregulated under these conditions. Our results point to an essential role of endogenous hippocampal estrogen synthesis in the maintenance of hippocampal spine synapses.
雌激素已被描述为可诱导海马体主要神经元的突触形成,并且已证实正是这些神经元合成并释放雌激素。在此,我们聚焦于局部雌激素合成对棘突突触形成及突触蛋白合成的重要性。为此,我们在体外使用来曲唑(一种可逆的非甾体芳香化酶抑制剂)降低海马体雌激素合成。在海马体切片培养中,经放射免疫分析定量,来曲唑处理导致17β - 雌二醇呈剂量依赖性降低。这伴随着棘突突触密度及突触前终扣数量的显著减少。定量免疫组织化学显示,来曲唑处理后,树突棘标记物亲棘蛋白及突触前囊泡蛋白突触素表达下调。令人惊讶的是,在未用过来曲唑处理的培养物培养基中添加雌二醇后,棘突、终扣和突触的密度以及亲棘蛋白表达并未增加。然而,在这些条件下突触素表达上调。我们的结果表明内源性海马体雌激素合成在维持海马体棘突突触方面起着至关重要的作用。