Brain Research Institute, University of Zürich, Switzerland.
Cell Death Differ. 2012 Jul;19(7):1096-108. doi: 10.1038/cdd.2011.191. Epub 2011 Dec 23.
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.
神经突生长抑制蛋白 Nogo-A 主要存在于中枢神经系统髓鞘中,在成年小鼠视神经损伤后,视网膜神经节细胞(RGC)中 Nogo-A 上调。Nogo-A 的上调与内质网应激(ER 应激)标志物 C/EBP 同源蛋白(CHOP)同时增加,但 CHOP 免疫染色和凋亡标志物膜联蛋白 V 并未与单个 RGC 细胞体中的 Nogo-A 共定位,表明损伤诱导的 Nogo-A 上调不参与轴突切断诱导的细胞死亡。用腺相关病毒血清型 2(AAV2)携带短发夹 RNA(AAV2.shRNA-Nogo-A)沉默 Nogo-A 或在敲除(KO)动物中敲除 Nogo-A 基因对损伤诱导的细胞应激或死亡几乎没有影响。另一方面,AAV2.Nogo-A 介导的 Nogo-A 过表达加剧了损伤后的 RGC 细胞死亡。然而,令人惊讶的是,AAV2.shRNA-Nogo-A 显著减少了损伤诱导的切断轴突的发芽和生长相关分子的表达。通过眼内注射炎症分子 Pam3Cys 激活的视神经中的轴突生长在 Nogo-A KO 小鼠中比在 WT 小鼠中趋于降低。体内 RGC 中 Nogo-A 的过表达或体外神经元细胞系 F11 中的过表达促进了再生,证明神经元 Nogo-A 在调节轴突再生中具有正向的、细胞自主的作用。