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鉴定发育中脊髓腹侧神经中间神经元的多个亚群,并沿前后轴的差异分布。

Identification of multiple subsets of ventral interneurons and differential distribution along the rostrocaudal axis of the developing spinal cord.

机构信息

Université catholique de Louvain, Institute of Neuroscience, Laboratory of Neural Differentiation, Brussels, Belgium.

出版信息

PLoS One. 2013 Aug 15;8(8):e70325. doi: 10.1371/journal.pone.0070325. eCollection 2013.

Abstract

The spinal cord contains neuronal circuits termed Central Pattern Generators (CPGs) that coordinate rhythmic motor activities. CPG circuits consist of motor neurons and multiple interneuron cell types, many of which are derived from four distinct cardinal classes of ventral interneurons, called V0, V1, V2 and V3. While significant progress has been made on elucidating the molecular and genetic mechanisms that control ventral interneuron differentiation, little is known about their distribution along the antero-posterior axis of the spinal cord and their diversification. Here, we report that V0, V1 and V2 interneurons exhibit distinct organizational patterns at brachial, thoracic and lumbar levels of the developing spinal cord. In addition, we demonstrate that each cardinal class of ventral interneurons can be subdivided into several subsets according to the combinatorial expression of different sets of transcription factors, and that these subsets are differentially distributed along the rostrocaudal axis of the spinal cord. This comprehensive molecular profiling of ventral interneurons provides an important resource for investigating neuronal diversification in the developing spinal cord and for understanding the contribution of specific interneuron subsets on CPG circuits and motor control.

摘要

脊髓包含被称为中央模式发生器(CPG)的神经元回路,这些回路协调有节奏的运动活动。CPG 回路由运动神经元和多种中间神经元细胞类型组成,其中许多来自四个不同的腹侧中间神经元主要类别,称为 V0、V1、V2 和 V3。虽然在阐明控制腹侧中间神经元分化的分子和遗传机制方面已经取得了重大进展,但对于它们在脊髓的前-后轴上的分布及其多样化知之甚少。在这里,我们报告说 V0、V1 和 V2 中间神经元在发育中的脊髓的臂、胸和腰水平表现出不同的组织模式。此外,我们证明每个主要的腹侧中间神经元类别可以根据不同转录因子集的组合表达进一步细分为几个亚群,并且这些亚群沿脊髓的头尾轴呈差异分布。这种对腹侧中间神经元的全面分子分析为研究发育中脊髓中的神经元多样化以及了解特定中间神经元亚群对 CPG 回路和运动控制的贡献提供了重要资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ec9/3744532/638f16a39e4b/pone.0070325.g001.jpg

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