Dubový Petr, Hradilová-Svíženská Ivana, Klusáková Ilona, Kokošová Viktoria, Brázda Václav, Joukal Marek
Department of Anatomy, Cellular and Molecular Research Group, Faculty of Medicine, Masaryk University, Kamenice 3, Brno, 62500, Czech Republic.
Histochem Cell Biol. 2018 Jul;150(1):37-47. doi: 10.1007/s00418-018-1656-y. Epub 2018 Feb 28.
Unilateral sciatic nerve compression (SNC) or complete sciatic nerve transection (CSNT), both varying degrees of nerve injury, induced activation of STAT3 bilaterally in the dorsal root ganglia (DRG) neurons of lumbar (L4-L5) as well as cervical (C6-C8) spinal cord segments. STAT3 activation was by phosphorylation at the tyrosine-705 (Y705) and serine-727 (S727) positions and was followed by their nuclear translocation. This is the first evidence of STAT3(S727) activation together with the well-known activation of STAT3(Y705) in primary sensory neurons upon peripheral nerve injury. Bilateral activation of STAT3 in DRG neurons of spinal segments anatomically both associated as well as non-associated with the injured nerve indicates diffusion of STAT3 activation inducers along the spinal cord. Increased levels of IL-6 protein in the CSF following nerve injury as well as activation and nuclear translocation of STAT3 in DRG after intrathecal injection of IL-6 shows that this cytokine, released into the subarachnoid space can penetrate the DRG to activate STAT3. Previous results on increased bilateral IL-6 synthesis and the present manifestation of STAT3 activation in remote DRG following unilateral sciatic nerve injury may reflect a systemic reaction of the DRG neurons to nerve injury.
单侧坐骨神经压迫(SNC)或坐骨神经完全横断(CSNT),这两种不同程度的神经损伤,均可诱导腰段(L4-L5)以及颈段(C6-C8)脊髓节段背根神经节(DRG)神经元中STAT3的双侧激活。STAT3的激活是通过酪氨酸705(Y705)和丝氨酸727(S727)位点的磷酸化实现的,随后发生核转位。这是首次有证据表明在周围神经损伤时,初级感觉神经元中STAT3(S727)与众所周知的STAT3(Y705)一同激活。脊髓节段的DRG神经元中,与损伤神经在解剖学上相关及不相关的双侧STAT3激活,表明STAT3激活诱导剂沿脊髓扩散。神经损伤后脑脊液中IL-6蛋白水平升高,以及鞘内注射IL-6后DRG中STAT3的激活和核转位,表明释放到蛛网膜下腔的这种细胞因子可穿透DRG激活STAT3。先前关于双侧IL-6合成增加的结果以及单侧坐骨神经损伤后远程DRG中STAT3激活的当前表现,可能反映了DRG神经元对神经损伤的全身反应。