Mühlfriedel Sven, Kirsch Friederike, Gruss Peter, Chowdhury Kamal, Stoykova Anastassia
Department of Molecular Cell Biology, Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, 37077 Göttingen, Germany.
Eur J Neurosci. 2007 Jul;26(1):33-50. doi: 10.1111/j.1460-9568.2007.05639.x.
Differential gene expression across the embryonic cerebral cortex is assumed to play a role in the subdivision of the cortex into distinct areas with specific morphology, physiology and function. In a search for genes that may be involved in the cortical regionalization during late neurogenesis in mouse, we performed an extensive in-situ expression analysis at embryonic day (E)16 and E18. The examined candidate genes were selected beforehand by a microarray screen by virtue of their preferential expression in the anlagen of the motor, somatosensory, visual and cingulate cortices or hippocampus. We present new information about graded or regionally enriched expression of 25 genes (nine of which are novel genes) across the mouse embryonic cortex, in progenitor cells as well as in the cortical plate. The established differential expression of most of these genes is persistent at both stages studied, suggesting that their expression is regulated by an intrinsic programme. For some of the genes, the concept of intrinsic regulation is further substantiated by the high similarity of the reported expression patterns at E16 and E18 and published data from earlier stages. Few genes with robust expression in the E16 caudal cortex showed a more restricted pattern at E18, possibly because of their response to extrinsic cues. In addition, several genes appeared to be suitable novel markers for amygdalar and diencephalic nuclei. Taken together, our findings reveal novel molecular partitions of the late mouse cortex that are in accordance with the model of a leading role of intrinsic mechanisms in cortical arealization.
胚胎大脑皮层中不同基因的表达被认为在将皮层细分为具有特定形态、生理学和功能的不同区域中发挥作用。在寻找可能参与小鼠神经发生晚期皮层区域化的基因时,我们在胚胎第16天(E16)和第18天(E18)进行了广泛的原位表达分析。通过微阵列筛选预先选择了所检测的候选基因,因为它们在运动、躯体感觉、视觉和扣带回皮层或海马体的原基中优先表达。我们展示了关于25个基因(其中9个是新基因)在小鼠胚胎皮层、祖细胞以及皮层板中的分级或区域富集表达的新信息。这些基因中大多数已确定的差异表达在两个研究阶段都是持续的,这表明它们的表达受内在程序调控。对于一些基因,内在调控的概念通过E16和E18报道的表达模式与早期阶段已发表数据的高度相似性进一步得到证实。在E16尾侧皮层中强烈表达的少数基因在E18时表现出更局限的模式,这可能是因为它们对外在信号的反应。此外,几个基因似乎是杏仁核和间脑核合适的新标记物。总之,我们的研究结果揭示了晚期小鼠皮层新的分子分区,这与内在机制在皮层区域化中起主导作用的模型一致。