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Cell type-specific Nogo-A gene ablation promotes axonal regeneration in the injured adult optic nerve

机译:特定于细胞类型的Nogo-A基因消融促进受伤的成人视神经中的轴突再生

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摘要

Nogo-A is a well-known myelin-enriched inhibitory protein for axonal growth and regeneration in the central nervous system (CNS). Besides oligodendrocytes, our previous data revealed that Nogo-A is also expressed in subpopulations of neurons including retinal ganglion cells, in which it can have a positive role in the neuronal growth response after injury, through an unclear mechanism. In the present study, we analyzed the opposite roles of glial versus neuronal Nogo-A in the injured visual system. To this aim, we created oligodendrocyte (Cnp-Cre(+/-) xRtn4/Nogo-A(flox/flox)) and neuron-specific (Thy1-Cre(tg+) xRtn4(flox/flox)) conditional Nogo-A knock-out (KO) mouse lines. Following complete intraorbital optic nerve crush, both spontaneous and inflammation-mediated axonal outgrowth was increased in the optic nerves of the glia-specific Nogo-A KO mice. In contrast, neuron-specific deletion of Nogo-A in a KO mouse line or after acute gene recombination in retinal ganglion cells mediated by adeno-associated virus serotype 2. Cre virus injection in Rtn4(flox/flox) animals decreased axon sprouting in the injured optic nerve. These results therefore show that selective ablation of Nogo-A in oligodendrocytes and myelin in the optic nerve is more effective at enhancing regrowth of injured axons than what has previously been observed in conventional, complete Nogo-A KO mice. Our data also suggest that neuronal Nogo-A in retinal ganglion cells could participate in enhancing axonal sprouting, possibly by cis-interaction with Nogo receptors at the cell membrane that may counteract trans-Nogo-A signaling. We propose that inactivating Nogo-A in glia while preserving neuronal Nogo-A expression may be a successful strategy to promote axonal regeneration in the CNS.
机译:Nogo-A是一种着名的富含髓鞘抑制蛋白,用于中枢神经系统(CNS)中的轴突生长和再生。除了少突胶质细胞外,我们之前的数据还表明,Nogo-A还表达了在包括视网膜神经节细胞的神经元的亚群中,其中通过不明确的机制,它可以在神经元生长反应中具有积极作用。在本研究中,我们分析了受伤视觉系统中胶质术与神经元Nogo-A的相反作用。为此目的,我们创建了少突(CNP-CRE(+/-)XRTN4 / Nogo-A(氟甲基/氟))和神经元特异性(THY1-CRE(TG +)XRTN4(FLOX / FLOX))条件Nogo-a敲击-out(ko)鼠标线。在完全的胎肾炎性视神经中粉碎后,在特异性胶石特异性Nogo-A KO小鼠的视神经中增加了自发性和炎症介导的轴突上。相比之下,在KO小鼠线中的Nogo-A或在由腺相关病毒血清型介导的视网膜神经节细胞中的急性基因重组中的神经元特异性缺失。RTN4中的CRE病毒注射液(散丝/氟)动物中的轴颈沟槽下降受伤的视神经。因此,这些结果表明,在视神经中的少突胶质细胞和髓鞘中的选择性消融在视神经中更有效地增强了轴突的再生,而不是以前在常规,完全的Nogo-A KO小鼠中观察到的。我们的数据还表明,视网膜神经节细胞中的神经元Nogo-A可以参与增强轴突发芽,可能是通过与可以抵消跨越式信号传导的细胞膜的CIS-相互作用。我们提出在保护神经元Nogo-A表达的同时灭活眩光中的Nogo-A可能是促进CNS中轴突再生的成功策略。

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  • 来源
    《Cell death and differentiation》 |2015年第2期|共13页
  • 作者单位

    Univ Zurich Brain Res Inst CH-8057 Zurich Switzerland;

    Univ Zurich Brain Res Inst CH-8057 Zurich Switzerland;

    INSERM U968 Paris France;

    Univ Zurich Brain Res Inst CH-8057 Zurich Switzerland;

    Univ Zurich Brain Res Inst CH-8057 Zurich Switzerland;

    Univ Zurich Brain Res Inst CH-8057 Zurich Switzerland;

    Univ Zurich Brain Res Inst CH-8057 Zurich Switzerland;

    Univ Zurich Brain Res Inst CH-8057 Zurich Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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