首页> 外文期刊>Glia >Giant Scaffolding Protein AHNAK1 Interacts with β-Dystroglycan and Controls Motility and Mechanical Properties of Schwann Cells
【24h】

Giant Scaffolding Protein AHNAK1 Interacts with β-Dystroglycan and Controls Motility and Mechanical Properties of Schwann Cells

机译:巨型支架蛋白AHNAK1与β-Dystroglycanan相互作用,并控制雪旺细胞的运动性和力学性能。

获取原文
获取原文并翻译 | 示例
           

摘要

The profound morphofunctional changes that Schwann cells (SCs) undergo during their migration and elongation on axons, as well as during axon sorting, ensheathment, and myelination, require their close interaction with the surrounding lamininrich basal lamina. In contrast to myelinating central nervous system glia, SCs strongly and constitutively express the giant scaffolding protein AHNAK1, localized essentially underneath the outer, abaxonal plasma membrane. Using electron microscopy, we show here that in the sciatic nerve of ahnak1~(-/-) mice the ultrastructure of myelinated, and unmyelinated (Remak) fibers is affected. The major SC laminin receptor β-dystroglycan co-immunoprecipitates with AHNAK1 shows reduced expression in ahnak1~(-/-) SCs, and is no longer detectable in Cajal bands on myelinated fibers in ahnak1~(-/-) sciatic nerve. Reduced migration velocity in a scratch wound assay of purified ahnak1~(-/-) primary SCs cultured on a laminin substrate indicated a function of AHNAK1 in SC motility. This was corroborated by atomic force microscopy measurements, which revealed a greater mechanical rigidity of shaft and leading tip of ahnak1~(-/-) SC processes. Internodal lengths of large fibers are decreased in ahnak1~(-/-) sciatic nerve, and longitudinal extension of myelin segments is even more strongly reduced after acute knockdown of AHNAK1 in SCs of developing sciatic nerve. Together, our results suggest that by interfering in the cross-talk between the transmembrane form of the laminin receptor dystroglycan and F-actin, AHNAK1 influences the cytoskeleton organization of SCs, and thus plays a role in the regulation of their morphology and motility and lastly, the myelination process.
机译:雪旺氏细胞(SCs)在其在轴突上的迁移和伸长以及轴突分选,包覆和髓鞘化期间经历的深刻的形态功能变化,要求它们与周围的层粘连蛋白丰富的基底层紧密结合。与有髓神经的中枢神经系统神经胶质细胞相反,SCs强烈且组成性地表达巨大的支架蛋白AHNAK1,该蛋白基本上定位在外部的轴突质膜下方。使用电子显微镜,我们在这里显示在ahnak1〜(-/-)小鼠的坐骨神经中,髓鞘和未髓鞘(Remak)纤维的超微结构受到影响。主要的SC层粘连蛋白受体β-dystroglycan与AHNAK1共免疫沉淀在ahnak1〜(-/-)SC中表达减少,并且在ahnak1〜(-/-)坐骨神经的髓鞘纤维的Cajal条带中不再检测到。在层粘连蛋白底物上培养的纯化的ahnak1〜(-/-)原代SC的刮擦试验中迁移速度的降低表明AHNAK1在SC运动中的功能。原子力显微镜测量证实了这一点,它显示了ahnak1〜(-/-)SC过程的轴和前端的更大机械刚度。在坐骨神经SC中AHNAK1急性敲低后,坐骨神经Ankak1〜(-/-)的大纤维节间长度减少,髓鞘节段的纵向延伸甚至更强烈地减少。总之,我们的结果表明,AHNAK1通过干扰层粘连蛋白受体dystroglycan的跨膜形式与F-肌动蛋白之间的串扰,影响SC的细胞骨架组织,从而在调节其形态和运动性中发挥作用,最后,髓鞘化过程。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号