Melfi Simona, Montt Guevara Maria Magdalena, Bonalume Veronica, Ruscica Massimiliano, Colciago Alessandra, Simoncini Tommaso, Magnaghi Valerio
Department of Pharmacological and Biomolecular Sciences, Università degli Studi di Milano, Milan, Italy.
Department of Clinical and Experimental Medicine, University of Pisa, Pisa, Italy.
J Neurochem. 2017 Apr;141(2):165-178. doi: 10.1111/jnc.13951. Epub 2017 Feb 10.
Schwann cells' (SCs) development and maturation require coordinate and complementary activation of several signals and intracellular pathways. Among factors controlling these processes, the signalling intermediates Src tyrosine kinase and focal adhesion kinase (FAK) are relevant for SCs', participating in regulation of their adhesion, motility and migration. Recently, the progesterone metabolite allopregnanolone (ALLO) was proved to be synthesized by SCs, whereas it acts autocrinally on SCs motility and proliferation, which are crucial processes for nerve development, maturation and regeneration. Herein, we investigate the hypothesis that the molecular mechanisms behind the ALLO's action on SCs involve the signalling intermediates Src and FAK. We first demonstrated that ALLO 10 M regulates SCs morphology, motility and myelination, also increasing the internode distance in the in vitro myelination model of neuron/SCs co-culture. ALLO's actions were mediated by the modulation of Src/FAK pathway, since they were counteracted by PP2 10 M, a selective inhibitor of Src kinase. Then, we proved that Src/FAK activation in SCs involves GABA-A dependent mechanisms and actin re-arrangements. In conclusion, our findings are the first to corroborate the importance of the neuroactive steroid ALLO in regulating SCs development and maturation via the Src and phospho-FAK signalling activation. Cover Image for this issue: doi: 10.1111/jnc.13795.
施万细胞(SCs)的发育和成熟需要多种信号和细胞内途径的协同和互补激活。在控制这些过程的因素中,信号转导中间体Src酪氨酸激酶和粘着斑激酶(FAK)与施万细胞相关,参与调节其粘附、运动和迁移。最近,已证实孕酮代谢物别孕烯醇酮(ALLO)由施万细胞合成,而它对施万细胞的运动和增殖起自分泌作用,这是神经发育、成熟和再生的关键过程。在此,我们研究了一个假说,即ALLO对施万细胞作用背后的分子机制涉及信号转导中间体Src和FAK。我们首先证明,10 μM的ALLO可调节施万细胞的形态、运动和髓鞘形成,还可增加神经元/施万细胞共培养体外髓鞘形成模型中的节间距离。ALLO的作用是通过Src/FAK途径的调节介导的,因为它们被10 μM的PP2(一种Src激酶的选择性抑制剂)所抵消。然后,我们证明施万细胞中Src/FAK的激活涉及GABA-A依赖性机制和肌动蛋白重排。总之,我们的发现首次证实了神经活性类固醇ALLO通过激活Src和磷酸化FAK信号在调节施万细胞发育和成熟中的重要性。本期封面图片:doi: 10.1111/jnc.13795。