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信号素与神经纤毛蛋白在运动神经元中的共表达决定了运动轴突寻路过程中轴突对周围信号素源的敏感性。

Semaphorin and neuropilin co-expression in motoneurons sets axon sensitivity to environmental semaphorin sources during motor axon pathfinding.

作者信息

Moret Frédéric, Renaudot Christelle, Bozon Muriel, Castellani Valérie

机构信息

Université de Lyon, F-69003, France.

出版信息

Development. 2007 Dec;134(24):4491-501. doi: 10.1242/dev.011452.

DOI:10.1242/dev.011452
PMID:18039974
Abstract

Class III semaphorins (SemaIIIs) are intercellular cues secreted by surrounding tissues to guide migrating cells and axons in the developing organism. This chemotropic activity is crucial for the formation of nerves and vasculature. Intriguingly, SemaIIIs are also synthesized by neurons during axon pathfinding, but their function as intrinsic cues remains unknown. We have explored the role of Sema3A expression in motoneurons during spinal nerve development. Loss- and gain-of-function in the neural tube of the chick embryo were undertaken to target Sema3A expression in motoneurons while preserving Sema3A sources localized in peripheral tissues, known to provide important repulsive information for delineating the routes of motor axons towards their ventral or dorsal targets. Strikingly, Sema3A overexpression induced defasciculation and exuberant growth of motor axon projections into these normally non-permissive territories. Moreover, knockdown studies showed that motoneuronal Sema3A is required for correct spinal nerve compaction and dorsal motor axon extension. Further analysis of Sema3A gain- and loss-of-function in ex vivo models revealed that Sema3A in motoneurons sets the level of sensitivity of their growth cones to exogenous Sema3A exposure. This regulation is associated with post-transcriptional and local control of the availability of the Sema3A receptor neuropilin 1 at the growth cone surface. Thus, by modulating the strength of Sema3A-mediated environmental repulsive constraints, Sema3A in motoneurons enables axons to extend more or less far away from these repulsive sources. Such interplay between intrinsic and extrinsic Sema3A may represent a fundamental mechanism in the accurate specification of axon pathways.

摘要

III类信号素(SemaIIIs)是周围组织分泌的细胞间信号,用于引导发育中的生物体中迁移的细胞和轴突。这种化学趋向性活动对于神经和血管系统的形成至关重要。有趣的是,在轴突寻路过程中,神经元也会合成SemaIIIs,但其作为内在信号的功能仍不清楚。我们探讨了Sema3A在脊髓神经发育过程中运动神经元中的表达作用。通过在鸡胚神经管中进行功能丧失和功能获得实验,以靶向运动神经元中的Sema3A表达,同时保留位于外周组织中的Sema3A来源,已知外周组织能为确定运动轴突向腹侧或背侧靶标的路径提供重要的排斥信息。令人惊讶的是,Sema3A的过表达导致运动轴突投射进入这些通常不允许进入的区域时出现解束和过度生长。此外,敲低实验表明,运动神经元中的Sema3A是脊髓神经正确压实和背侧运动轴突延伸所必需的。在体外模型中对Sema3A功能获得和功能丧失的进一步分析表明,运动神经元中的Sema3A设定了其生长锥对外源性Sema3A暴露的敏感程度。这种调节与生长锥表面Sema3A受体神经纤毛蛋白1可用性的转录后和局部控制有关。因此,通过调节Sema3A介导的环境排斥限制的强度,运动神经元中的Sema3A使轴突能够或多或少地远离这些排斥源延伸。内在和外在Sema3A之间的这种相互作用可能代表了轴突路径精确特化的一种基本机制。

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