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Neuronal Nogo-A upregulation does not contribute to ER stress-associated apoptosis but participates in the regenerative response in the axotomized adult retina

机译:神经元Nogo-A上调不会促进ER应激相关的细胞凋亡,但参与了轴突切除后成人视网膜的再生反应。

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摘要

Nogo-A, an axonal growth inhibitory protein known to be mostly present in CNS myelin, was upregulated in retinal ganglion cells (RGCs) after optic nerve injury in adult mice. Nogo-A increased concomitantly with the endoplasmic reticulum stress (ER stress) marker C/EBP homologous protein (CHOP), but CHOP immunostaining and the apoptosis marker annexin V did not co-localize with Nogo-A in individual RGC cell bodies, suggesting that injury-induced Nogo-A upregulation is not involved in axotomy-induced cell death. Silencing Nogo-A with an adeno-associated virus serotype 2 containing a short hairpin RNA (AAV2.shRNA-Nogo-A) or Nogo-A gene ablation in knock-out (KO) animals had little effect on the lesion-induced cell stress or death. On the other hand, Nogo-A overexpression mediated by AAV2.Nogo-A exacerbated RGC cell death after injury. Strikingly, however, injury-induced sprouting of the cut axons and the expression of growth-associated molecules were markedly reduced by AAV2.shRNA-Nogo-A. The axonal growth in the optic nerve activated by the intraocular injection of the inflammatory molecule Pam3Cys tended to be lower in Nogo-A KO mice than in WT mice. Nogo-A overexpression in RGCs in vivo or in the neuronal cell line F11 in vitro promoted regeneration, demonstrating a positive, cell-autonomous role for neuronal Nogo-A in the modulation of axonal regeneration.
机译:成年小鼠视神经损伤后,视网膜神经节细胞(RGC)上调了Nogo-A,它是一种主要存在于中枢神经系统髓磷脂中的轴突生长抑制蛋白。 Nogo-A与内质网应激(ER应激)标记C / EBP同源蛋白(CHOP)同时增加,但CHOP免疫染色和凋亡标记膜联蛋白V并未与Nogo-A在单个RGC细胞体中共定位。损伤诱导的Nogo-A上调不参与轴切术诱导的细胞死亡。在剔除(KO)动物中,用含有短发夹RNA(AAV2.shRNA-Nogo-A)或Nogo-A基因消融的腺相关病毒血清型2沉默Nogo-A对病变诱导的细胞应激影响很小或死亡。另一方面,由AAV2介导的Nogo-A过表达Nogo-A加剧了损伤后RGC细胞的死亡。然而,引人注目的是,AAV2.shRNA-Nogo-A显着降低了损伤诱导的切下来的轴突发芽和与生长相关的分子的表达。眼内注射炎症分子Pam3Cys激活的视神经轴突生长在Nogo-A KO小鼠中比在WT小鼠中要低。体内或体外神经元细胞系F11中的Nogo-A过表达促进了再生,证明了神经元Nogo-A在轴突再生调节中具有积极的细胞自主作用。

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