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Non-viral-mediated suppression of AMIGO3 promotes disinhibited NT3-mediated regeneration of spinal cord dorsal column axons

机译:非病毒介导的AMIGO3抑制作用可促进NT3介导的脊髓背柱轴突再生的抑制作用

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摘要

After injury to the mature central nervous system (CNS), myelin-derived inhibitory ligands bind to the Nogo-66 tripartite receptor complex expressed on axonal growth cones, comprised of LINGO-1 and p75NTR/TROY and induce growth cone collapse through the RhoA pathway. We have also shown that amphoterin-induced gene and open reading frame-3 (AMIGO3) substitutes for LINGO-1 and can signal axon growth cone collapse. Here, we investigated the regeneration of dorsal root ganglion neuron (DRGN) axonseurites after treatment with a short hairpin RNA (sh) AMIGO3 plasmid delivered with a non-viral in vivo-jetPEI vector, and the pro-survival/axogenic neurotrophin (NT) 3 in vitro and in vivo. A bicistronic plasmid, containing both shAMIGO3 and NT3 knocked down >75% of AMIGO3 mRNA in cultured DRGN and significantly overexpressed NT3 production. In vivo, intra-DRG injection of in vivo-jetPEI plasmids containing shAMIGO3/gfp and shAMIGO3t3 both knocked down AMIGO3 expression in DRGN and, in combination with NT3 overexpression, promoted DC axon regeneration, recovery of conduction of compound action potentials across the lesion site and improvements in sensory and locomotor function. These findings demonstrate that in vivo-jetPEI is a potential non-viral, translatable DRGN delivery vehicle in vivo and that suppression of AMIGO3 disinhibits the growth of axotomised DRGN enabling NT3 to stimulate the regeneration of their DC axons and enhances functional recovery.
机译:损伤成熟的中枢神经系统(CNS)后,髓磷脂来源的抑制性配体与轴突生长锥上表达的Nogo-66三方受体复合物结合,该复合物由LINGO-1和p75 NTR / TROY和通过RhoA途径诱导生长锥塌陷。我们还显示,两性蛋白诱导的基因和开放阅读框3(AMIGO3)替代LINGO-1,并且可以表示轴突生长锥塌陷。在这里,我们研究了用非病毒体内jetPEI载体递送的短发夹RNA(sh)AMIGO3质粒和促存活/生轴神经营养蛋白()后处理的背根神经节神经元(DRGN)轴突/神经突的再生。 NT)3在体内和体外。含有shAMIGO3和NT3的双顺反子质粒在培养的DRGN中敲低了AMIGO3 mRNA的> 75%,并显着过表达NT3的产生。在体内,包含shAMIGO3 / gfp和shAMIGO3 / nt3的vivo-jetPEI质粒的DRG内注射均能降低DRGN中AMIGO3的表达,并与NT3过表达相结合,促进DC轴突再生,恢复跨细胞的复合作用电位的传导。病变部位并改善感觉和运动功能。这些发现表明,体内jetPEI是体内潜在的非病毒,可翻译的DRGN传递载体,对AMIGO3的抑制抑制了无轴突DRGN的生长,从而使NT3能够刺激其DC轴突的再生并增强功能恢复。

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