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首页> 外文期刊>Development >Neuronal Nogo-A regulates neurite fasciculation, branching and extension in the developing nervous system.
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Neuronal Nogo-A regulates neurite fasciculation, branching and extension in the developing nervous system.

机译:神经元Nogo-A调节神经系统发育过程中的神经突束,分支和延伸。

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摘要

Wiring of the nervous system is a multi-step process involving complex interactions of the growing fibre with its tissue environment and with neighbouring fibres. Nogo-A is a membrane protein enriched in the adult central nervous system (CNS) myelin, where it restricts the capacity of axons to grow and regenerate after injury. During development, Nogo-A is also expressed by neurons but its function in this cell type is poorly known. Here, we show that neutralization of neuronal Nogo-A or Nogo-A gene ablation (KO) leads to longer neurites, increased fasciculation, and decreased branching of cultured dorsal root ganglion neurons. The same effects are seen with antibodies against the Nogo receptor complex components NgR and Lingo1, or by blocking the downstream effector Rho kinase (ROCK). In the chicken embryo, in ovo injection of anti-Nogo-A antibodies leads to aberrant innervation of the hindlimb. Genetic ablation of Nogo-A causes increased fasciculation and reduced branching of peripheral nerves in Nogo-A KO mouse embryos. Thus, Nogo-A is a developmental neurite growth regulatory factor with a role as a negative regulator of axon-axon adhesion and growth, and as a facilitator of neurite branching.
机译:神经系统的布线是一个多步骤过程,涉及到生长中的纤维与其组织环境以及邻近纤维之间的复杂相互作用。 Nogo-A是一种富含成年中枢神经系统(CNS)髓磷脂的膜蛋白,它限制了轴突在受伤后生长和再生的能力。在发育过程中,Nogo-A也由神经元表达,但在这种细胞类型中的功能却鲜为人知。在这里,我们显示神经元Nogo-A或Nogo-A基因消融(KO)的中和导致更长的神经突,增加束缚和培养的背根神经节神经元分支。用抗Nogo受体复合物组分NgR和Lingo1的抗体,或通过阻断下游效应子Rho激酶(ROCK),可以看到相同的效果。在鸡胚中,卵内注射抗Nogo-A抗体会导致后肢的神经支配异常。 Nogo-A的遗传消融导致Nogo-A KO小鼠胚胎的束缚增加和周围神经的分支减少。因此,Nogo-A是一种发育的神经突生长调节因子,具有轴突-轴突粘附和生长的负调节剂的作用以及神经突分支的促进剂。

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