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Methylglyoxal Disrupts Paranodal Axoglial Junctions via Calpain Activation

机译:甲基乙醛通过CALPAIN活化扰乱了剖腹产轨道点

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Nodes of Ranvier and associated paranodal and juxtaparanodal domains along myelinated axons are essential for normal function of the peripheral and central nervous systems. Disruption of these domains as well as increases in the reactive carbonyl species methylglyoxal are implicated as a pathophysiology common to a wide variety of neurological diseases. Here, using an ex vivo nerve exposure model, we show that increasing methylglyoxal produces paranodal disruption, evidenced by disorganized immunostaining of axoglial cell-adhesion proteins, in both sciatic and optic nerves from wild-type mice. Consistent with previous studies showing that increase of methylglyoxal can alter intracellular calcium homeostasis, we found upregulated activity of the calcium-activated protease calpain in sciatic nerves after methylglyoxal exposure. Methylglyoxal exposure altered clusters of proteins that are known as calpain substrates: ezrin in Schwann cell microvilli at the perinodal area and zonula occludens 1 in Schwann cell autotypic junctions at paranodes. Finally, treatment with the calpain inhibitor calpeptin ameliorated methylglyoxal-evoked ezrin loss and paranodal disruption in both sciatic and optic nerves. Our findings strongly suggest that elevated methylglyoxal levels and subsequent calpain activation contribute to the disruption of specialized axoglial domains along myelinated nerve fibers in neurological diseases.
机译:Ranvier的节点和沿着脊髓轴突的剖腹产桥和伴侣桥的节点对于外围和中枢神经系统的正常功能至关重要。这些结构域的破坏以及反应性羰基物种的增加甲基乙二醛作为各种神经疾病的致病生理学。在这里,使用前体内神经曝光模型,我们表明增加甲基甘油醛产生双剖视破坏,通过官方型小鼠的坐骨和视神经中的胰岛素细胞粘附蛋白的紊乱免疫染色证明。与先前的研究一致表明甲基甘油氧基的增加可以改变细胞内钙稳态,我们发现甲基甘油氧暴露后坐骨神经中的钙活化蛋白酶Calpain的上调活性。甲基甘油曝光改变了称为CALPAIN底物的蛋白质簇:在PERINODAL区域和Zonula obcludens 1的施旺细胞微绒毛中的EZRIN在分段的施万细胞自型交叉点。最后,用Calpain抑制剂Calpeptin治疗改善了甲基乙二醛诱发的Ezrin损失和坐骨神经和视神经中的双剖腹症。我们的研究结果表明,甲基甘油水平升高和随后的钙骨激活有助于沿着神经疾病中的骨髓神经纤维的专门轴突中断。

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