Voigt Cornelia, Metzdorf Reinhold, Gahr Manfred
Abteilung Wickler, Max-Planck-Institut für Verhaltensphysiologie, D-82319 Seewiesen, Germany.
J Comp Neurol. 2004 Jul 12;475(1):83-94. doi: 10.1002/cne.20151.
Gonadal steroid hormones play an important role in the process of sexual differentiation of brain areas and behavior such as singing and song learning in songbirds. These hormones affect behavior controlling circuits on both the gross morphological and ultrastructural levels. Here we study whether the expression of genes coding for synaptic proteins is sensitive to gonadal steroid hormones and whether such altered expression coincides with changes in brain area size. We treated adult male zebra finches with the aromatase inhibitor fadrozole, to reduce estrogen synthesis and analyzed the mRNA expression of the synaptic proteins synaptoporin (SPO) and synaptosomal-associated protein 25 kDa (SNAP-25) in song control areas and surrounding tissues of adult male zebra finches. SPO and SNAP-25 are differently expressed throughout the song system. Generally, the telencephalic song nuclei expressed SNAP-25 at high intensity whereas SPO expression was area-specific. Elevated levels of SNAP-25 mRNA were present in the nucleus hyperstriatalis ventrale pars caudale (HVC) and in the robust nucleus of the archistriatum (RA). SPO mRNA was found in moderate levels in the HVC, in low levels in the lateral nucleus magnocellularis (lMAN) and Area X, and was absent in the RA. The treatment significantly increased the mRNA level of SPO in the HVC, whereas SNAP-25 expression level was not affected. These expression patterns are not explained by the decrease of HVC volume after treatment. The decreased HVC size is not area-specific but correlates with an overall reduction in size and an overall increase in cell density of the forebrain.
性腺类固醇激素在脑区性分化以及诸如鸣禽鸣叫和歌曲学习等行为过程中发挥着重要作用。这些激素在大体形态和超微结构水平上影响行为控制回路。在此,我们研究编码突触蛋白的基因表达是否对性腺类固醇激素敏感,以及这种表达改变是否与脑区大小的变化相一致。我们用芳香化酶抑制剂法倔唑处理成年雄性斑胸草雀,以减少雌激素合成,并分析成年雄性斑胸草雀鸣叫控制区域及周围组织中突触蛋白突触孔蛋白(SPO)和25 kDa突触体相关蛋白(SNAP - 25)的mRNA表达。SPO和SNAP - 25在整个鸣叫系统中表达不同。一般来说,端脑鸣叫核高强度表达SNAP - 25,而SPO表达具有区域特异性。SNAP - 25 mRNA水平在腹侧尾端超纹状体核(HVC)和古纹状体粗核(RA)中升高。在HVC中发现SPO mRNA水平中等,在大细胞外侧核(lMAN)和X区中水平较低,在RA中则不存在。该处理显著增加了HVC中SPO的mRNA水平,而SNAP - 25的表达水平未受影响。这些表达模式无法用处理后HVC体积的减小来解释。HVC大小的减小并非区域特异性的,而是与前脑整体大小的减小和细胞密度的整体增加相关。