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Regulation of Schwann cell proliferation and migration by miR-1 targeting brain-derived neurotrophic factor after peripheral nerve injury

机译:靶向神经源性神经营养因子的miR-1对周围神经损伤后雪旺细胞增殖和迁移的调节

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摘要

Peripheral nerve injury is a global problem that causes disability and severe socioeconomic burden. Brain-derived neurotrophic factor (BDNF) benefits peripheral nerve regeneration and becomes a promising therapeutic molecule. In the current study, we found that microRNA-1 (miR-1) directly targeted BDNF by binding to its 3′-UTR and caused both mRNA degradation and translation suppression of BDNF. Moreover, miR-1 induced BDNF mRNA degradation primarily through binding to target site 3 rather than target site 1 or 2 of BDNF 3′-UTR. Following rat sciatic nerve injury, a rough inverse correlation was observed between temporal expression profiles of miR-1 and BDNF in the injured nerve. The overexpression or silencing of miR-1 in cultured Schwann cells (SCs) inhibited or enhanced BDNF secretion from the cells, respectively, and also suppressed or promoted SC proliferation and migration, respectively. Interestingly, BDNF knockdown could attenuate the enhancing effect of miR-1 inhibitor on SC proliferation and migration. These findings will contribute to the development of a novel therapeutic strategy for peripheral nerve injury, which overcomes the limitations of direct administration of exogenous BDNF by using miR-1 to regulate endogenous BDNF expression.
机译:周围神经损伤是导致残疾和严重的社会经济负担的全球性问题。脑源性神经营养因子(BDNF)有益于周围神经的再生,并成为一种有前途的治疗分子。在当前研究中,我们发现microRNA-1(miR-1)通过与BDNF的3'-UTR结合直接靶向BDNF,并导致BDNF的mRNA降解和翻译抑制。此外,miR-1主要通过结合至BDNF 3'-UTR的靶位点3而非靶位点1或2来诱导BDNF mRNA降解。大鼠坐骨神经损伤后,观察到miR-1和BDNF在损伤神经中的时间表达谱之间存在大致的负相关。培养的Schwann细胞(SCs)中miR-1的过表达或沉默分别抑制或增强了该细胞的BDNF分泌,并且分别抑制或促进了SC的增殖和迁移。有趣的是,BDNF敲低可以减弱miR-1抑制剂对SC增殖和迁移的增强作用。这些发现将有助于开发一种新的周围神经损伤治疗策略,该策略克服了通过使用miR-1调节内源性BDNF表达直接施用外源性BDNF的局限性。

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