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Deletion of brain dystroglycan recapitulates aspects of congenital muscular dystrophy

机译:删除脑营养不良聚糖可概括先天性肌营养不良症的各个方面

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Fukuyama congenital muscular dystrophy (FCMD), muscle-eye-brain disease (MEB), and Walker-Warburg syndrome are congenital muscular dystrophies (CMDs) with associated developmental brain defects. Mutations reported in genes of FCMD and MEB patients suggest that the genes may be involved in protein glycosylation. Dystroglycan is a highly glycosylated component of the muscle dystrophin-glycoprotein complex that is also expressed in brain, where its function is unknown. Here we show that brain-selective deletion of dystroglycan in mice is sufficient to cause CMD-like brain malformations, including disarray of cerebral cortical layering, fusion of cerebral hemispheres and cerebellar folia, and aberrant migration of granule cells. Dystroglycan-null brain loses its high-affinity binding to the extracellular matrix protein laminin, and shows discontinuities in the pial surface basal lamina (glia limit ans) that probably underlie the neuronal migration errors. Furthermore, mutant mice have severely blunted hippocampal long-term potentiation with electrophysiologic characterization indicating that dystroglycan might have a postsynaptic role in learning and memory. Our data strongly support the hypothesis that defects in dystroglycan are central to the pathogenesis of structural and functional brain abnormalities seen in CMD.
机译:福山先天性肌营养不良症(FCMD),肌眼脑疾病(MEB)和沃克-沃堡综合症是先天性肌营养不良症(CMD),伴有相关的发育性大脑缺陷。在FCMD和MEB患者的基因中报道的突变表明该基因可能与蛋白质糖基化有关。 dystroglycan是肌营养不良蛋白-糖蛋白复合物的高度糖基化成分,其在脑中也表达,其功能尚不清楚。在这里,我们显示小鼠中的选择性甘油三酸酯选择性缺失足以引起CMD样脑畸形,包括大脑皮层分层紊乱,脑半球和小脑叶融合以及颗粒细胞异常迁移。 dystroglycan无效的大脑失去其与细胞外基质蛋白层粘连蛋白的高亲和力结合,并显示出可能是神经元迁移错误的原因的脑膜表面基底层不连续(神经胶质限度ans)。此外,突变小鼠具有电生理学特征,使海马长期增强能力严重减弱,表明dystroglycan可能在学习和记忆中具有突触后作用。我们的数据有力地支持了这样的假说,即dystroglycan中的缺陷是CMD中所见的大脑结构和功能异常的发病机理的中心。

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