Division of Anatomy and Neurobiology, Department of Physiology and Cell Biology, Kobe University Graduate School of Medicine, Kobe 650-0017, Japan.
Dev Growth Differ. 2010 Feb;52(2):181-93. doi: 10.1111/j.1440-169X.2009.01153.x. Epub 2010 Jan 7.
Neurons with similar functions including neuronal connectivity and gene expression form discrete condensed structures within the vertebrate brain. This is exemplified within the circuitry formed by the cortical layers and the neuronal nuclei. It is well known that the Reelin protein is required for development of these neuronal structures in rodents and human, but the function of Reelin remains controversial. In this report, we used "layer-specific markers" of the cerebral cortex to carry out detailed observations of spatial distribution of the neuronal subpopulations in the brain of the Reelin deficient mouse, reeler. We observed a spatially dispersed expression of the markers in the reeler cerebral cortex. These markers are expressed also in other laminated and non-laminated structures of brain, in which we observed similar abnormal gene expression. Our observations suggest that neurons within the brain structures (such as the layers and the nuclei), which normally exhibit condensed distribution of marker expressions, loosen their segregation or scatter by a lack of Reelin.
具有相似功能的神经元,包括神经元连接和基因表达,在脊椎动物大脑中形成离散的凝聚结构。这在由皮质层和神经元核形成的回路中得到了例证。众所周知,Reelin 蛋白对于啮齿动物和人类的这些神经元结构的发育是必需的,但 Reelin 的功能仍然存在争议。在本报告中,我们使用大脑皮层的“层特异性标志物”,对 Reelin 缺陷型小鼠,即 reeler 的大脑中神经元亚群的空间分布进行了详细观察。我们观察到 Reeler 大脑皮层中标志物的表达呈现出空间上分散的模式。这些标志物也在大脑的其他层状和非层状结构中表达,我们在这些结构中观察到了类似的异常基因表达。我们的观察结果表明,在正常表现出标志物表达凝聚分布的大脑结构(如层和核)中的神经元,由于缺乏 Reelin 而导致其分离或分散。