Laboratory for Biolinguistics, Brain Science Institute, Wako, Saitama, 351-0198, Japan.
Brain Res. 2010 Nov 11;1360:56-76. doi: 10.1016/j.brainres.2010.09.014. Epub 2010 Sep 21.
Songbirds have a specialized neural substrate for learned vocalization, called the song circuit, which consists of several song nuclei in the brain. The song control nucleus HVC (a letter-based name) is the intersection point of the song learning and vocal motor pathways. Knowledge of the types of genes expressed in the HVC is essential in understanding the molecular aspects of the HVC. Gene expression in the HVC under silent conditions shows the competence necessary for singing. To investigate this, we compared the HVC with its adjacent tissues in searching for the molecular specificities of the song nucleus HVC using an in-house cDNA microarray of the Bengalese finch (Lonchura striata var. domestica). Our microarray analysis revealed that 70 genes were differentially expressed in the HVC compared with the adjacent tissue. We investigated 27 of the microarray-selected genes that were enriched or repressed in the HVC by in situ hybridization. We found that multiple calcium-binding proteins (e.g., CAPS2, parvalbumin and ATH) were enriched in the HVC. Meanwhile, the adult HVC showed low expression levels of plasticity-related genes (e.g., CAMK2A and MAP2K1) compared with the juvenile HVC. The HVC plays an important role during song learning, but our results suggest that the plasticity of this nucleus may be suppressed during adulthood. Our findings provide new information about the molecular features that characterize the HVC.
鸣禽具有专门的用于学习发声的神经基质,称为歌唱回路,它由大脑中的几个歌唱核组成。歌唱控制核 HVc(基于字母的名称)是歌唱学习和发声运动途径的交汇点。了解 HVc 中表达的基因类型对于理解 HVc 的分子方面至关重要。在沉默条件下,HVC 中的基因表达显示出歌唱所需的能力。为了研究这一点,我们使用孟加拉雀(Lonchura striata var. domestica)的内部 cDNA 微阵列,将 HVC 与其相邻组织进行比较,以寻找歌唱核 HVC 的分子特异性。我们的微阵列分析表明,与相邻组织相比,HVC 中有 70 个基因表达存在差异。我们通过原位杂交研究了微阵列选择的 27 个在 HVC 中富集或受抑制的基因。我们发现,多个钙结合蛋白(例如 CAPS2、parvalbumin 和 ATH)在 HVC 中富集。同时,与幼年 HVC 相比,成年 HVC 中与可塑性相关的基因(例如 CAMK2A 和 MAP2K1)的表达水平较低。HVC 在歌唱学习中起着重要作用,但我们的研究结果表明,该核的可塑性在成年期可能受到抑制。我们的发现提供了有关表征 HVC 的分子特征的新信息。