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Does Cell Lineage in the Developing Cerebral Cortex Contribute to its Columnar Organization?

机译:发育中的大脑皮层中的细胞谱系是否有助于其柱状组织?

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摘要

Since the pioneer work of Lorente de Nó, Ramón y Cajal, Brodmann, Mountcastle, Hubel and Wiesel and others, the cerebral cortex has been seen as a jigsaw of anatomic and functional modules involved in the processing of different sets of information. In fact, a columnar distribution of neurons displaying similar functional properties throughout the cerebral cortex has been observed by many researchers. Although it has been suggested that much of the anatomical substrate for such organization would be already specified at early developmental stages, before activity-dependent mechanisms could take place, it is still unclear whether gene expression in the ventricular zone (VZ) could play a role in the development of discrete functional units, such as minicolumns or columns. Cell lineage experiments using replication-incompetent retroviral vectors have shown that the progeny of a single neuroepithelial/radial glial cell in the dorsal telencephalon is organized into discrete radial clusters of sibling excitatory neurons, which have a higher propensity for developing chemical synapses with each other rather than with neighboring non-siblings. Here, we will discuss the possibility that the cell lineage of single neuroepithelial/radial glia cells could contribute for the columnar organization of the neocortex by generating radial columns of sibling, interconnected neurons. Borrowing some concepts from the studies on cell–cell recognition and transcription factor networks, we will also touch upon the potential molecular mechanisms involved in the establishment of sibling-neuron circuits.
机译:自从洛伦特·德·诺(Lorente deNó),拉蒙·卡哈尔(Ramóny Cajal),布罗德曼(Brodmann),芒特卡斯尔(Mountcastle),胡贝尔(Hubel)和维塞尔(Wiesel)等人的开创性工作以来,大脑皮层就被视为涉及不同信息集处理的解剖学和功能模块的拼图。实际上,许多研究人员已经观察到整个大脑皮层显示相似功能特性的神经元的柱状分布。尽管已经提出在这种组织的大部分解剖学底物将在发育的早期就已经确定,但是在活动依赖的机制发生之前,仍不清楚心室区(VZ)中的基因表达是否可以发挥作用在开发离散功能单元(例如微型列或列)中。使用无复制能力的逆转录病毒载体进行的细胞谱系实验表明,背侧端脑中单个神经上皮/ gl神经胶质细胞的后代被组织成同胞兴奋神经元的离散放射状簇,它们相互之间更容易发生化学突触。而不是与邻近的非同胞。在这里,我们将讨论单个神经上皮/ radi神经胶质细胞的细胞谱系可能通过生成同胞,相互连接的神经元的放射状柱而有助于新皮质的柱状组织的可能性。从细胞间识别和转录因子网络的研究中借鉴一些概念,我们还将探讨同级神经元回路的建立所涉及的潜在分子机制。

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