首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The role of p38alpha in Schwann cells in regulating peripheral nerve myelination and repair
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The role of p38alpha in Schwann cells in regulating peripheral nerve myelination and repair

机译:P38α在施旺细胞在调节外周神经髓鞘的作用和修复的作用

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Myelination in the peripheral nervous system (PNS) is controlled by both positive and negative regulators within Schwann cells to ensure timely onset and correct myelin thickness for saltatory conduction by neurons. Transcription factors such as Sox10, octamer-binding transcription factor 6 (Oct6) and Krox20 form a positive regulatory network, whereas negative regulators such as cJun and Sox2 oppose myelination in Schwann cells. The role of the p38 MAPK pathway has been studied in PNS myelination, but its precise function remains unclear, with both positive and negative effects of p38 activity reported upon both myelination and processes of nerve repair. To clarify the role of p38 MAPK in the PNS, we have analysed mice with a Schwann cell-specific ablation of the major p38 isoform, p38alpha. In line with previous findings of an inhibitory role for p38 MAPK, we observe acceleration of post-natal myelination in p38alpha null nerves, a delay in myelin down-regulation following injury, together with a small increase in levels of re-myelination following injury. Finally we explored roles for p38alpha in controlling axonal regeneration and functional repair following PNS injury and observe that loss of p38alpha function in Schwann cells does not appear to affect these processes as previously reported. These studies therefore provide further proof for a role of p38 MAPK signalling in the control of myelination by Schwann cells in the PNS, but do not show an apparent role for signalling by this MAP kinase in Schwann cells controlling other elements of Wallerian degeneration and functional repair following injury.
机译:在外周神经系统(PNS)中的髓鞘由Schwann细胞内的阳性和阴性调节剂控制,以确保及时发作和正确的髓鞘厚度,用于由神经元进行盐类传导。转录因子如SOX10,八辛结合转录因子6(100-10)和KrOx20形成阳性调节网络,而诸如Cjun和Sox2的负调节因子在施旺细胞中反对髓鞘。 P38 MAPK途径的作用已在PNS髓鞘中研究,但其精确的功能仍不清楚,P38活性的正面和负面影响报告了神经修复的髓鞘系和过程。为了澄清P38 MAPK在PNS中的作用,我们已经分析了具有Schwann细胞特异性P38同种型,P38Alpha的小鼠的小鼠。根据先前发现P38 MAPK的抑制作用,我们观察在P38Alpha零神经中的产后髓鞘中的加速,伤害后骨髓下调的延迟,损伤后重新髓鞘水平的小幅增加。最后,我们探讨了P38Alpha在控制轴突再生和功能性修复方面对PNS损伤的功能修复进行了探索,并且观察到施旺细胞中P38Alpha功能的损失似乎不会影响这些过程,如前所述。因此,这些研究提供了P38 MAPK信号传导在PNS中的氏菌细胞控制中的P38 MAPK信号传导的作用,但在施万氏细胞中通过控制Wallerian变性和功能性修复的其他元素来表明通过该地图激酶来表明信号传导的明显作用受伤后。

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