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连合纤维轴突束指导小鼠脊髓中的神经元迁移。

Commissural axonal corridors instruct neuronal migration in the mouse spinal cord.

机构信息

Umeå Center for Molecular Medicine, Umeå University, Building 6M, Umeå 901-87, Sweden.

出版信息

Nat Commun. 2015 May 11;6:7028. doi: 10.1038/ncomms8028.

Abstract

Unravelling how neurons are guided during vertebrate embryonic development has wide implications for understanding the assembly of the nervous system. During embryogenesis, migration of neuronal cell bodies and axons occurs simultaneously, but to what degree they influence each other's development remains obscure. We show here that within the mouse embryonic spinal cord, commissural axons bisect, delimit or preconfigure ventral interneuron cell body position. Furthermore, genetic disruption of commissural axons results in abnormal ventral interneuron cell body positioning. These data suggest that commissural axonal fascicles instruct cell body position by acting either as border landmarks (axon-restricted migration), which to our knowledge has not been previously addressed, or acting as cellular guides. This study in the developing spinal cord highlights an important function for the interaction of cell bodies and axons, and provides a conceptual proof of principle that is likely to have overarching implications for the development of neuronal architecture.

摘要

解析脊椎动物胚胎发育过程中神经元的导向机制对于理解神经系统的组装具有广泛的意义。在胚胎发生过程中,神经元细胞体和轴突的迁移是同时发生的,但它们彼此之间的影响程度尚不清楚。我们在这里表明,在小鼠胚胎脊髓中,连合轴突将腹侧中间神经元的细胞体位置二分、限定或预先配置。此外,连合轴突的遗传破坏导致腹侧中间神经元细胞体位置异常。这些数据表明,连合轴突束通过充当边界地标(轴突限制迁移)来指示细胞体位置,而这一点我们之前并未涉及,或者充当细胞导向物。这项在发育中的脊髓中的研究强调了细胞体和轴突相互作用的重要功能,并为细胞体和轴突相互作用的重要功能提供了一个概念性的原理证明,这很可能对神经元结构的发育具有广泛的意义。

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