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Post-translational disruption of dystroglycan-ligand interactions in congenital muscular dystrophies

机译:先天性肌营养不良中dystroglycan-配体相互作用的翻译后破坏。

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摘要

Muscle-eye-brain disease (MEB) and Fukuyama congenital muscular dystrophy (FCMD) are congenital muscular dystrophies with associated, similar brain malformations. The FCMD gene, fukutin, shares some homology with fringe-like glycosyltrans-ferases, and the MEB gene, POMGnT1, seems to be a new glycosyltransferase. Here we show, in both MEB and FCMD patients, that α-dystroglycan is expressed at the muscle membrane, but similar hypoglycosylation in the diseases directly abolishes binding activity of dystroglycan for the ligands lami-nin, neurexin and agrin. We show that this post-translational biochemical and functional disruption of α-dystroglycan is recapitulated in the muscle and central nervous system of mutant myodystrophy (myd) mice. We demonstrate that myd mice have abnormal neuronal migration in cerebral cortex, cerebellum and hippocampus, and show disruption of the basal lamina. In addition, myd mice reveal that dystroglycan targets proteins to functional sites in brain through its interactions with extracellular matrix proteins. These results suggest that at least three distinct mammalian genes function within a convergent post-translational processing pathway during the biosynthesis of dystroglycan, and that abnormal dystroglycan-ligand interactions underlie the pathogenic mechanism of muscular dystrophy with brain abnormalities.
机译:肌肉眼脑疾病(MEB)和福山先天性肌营养不良症(FCMD)是先天性肌营养不良症,伴有相似的脑畸形。 FCMD基因fukutin与条纹状糖基转移酶具有某些同源性,而MEB基因POMGnT1似乎是一种新的糖基转移酶。在这里,我们表明,在MEB和FCMD患者中,α-dystroglycan在肌肉膜上表达,但是在疾病中类似的低糖基化直接消除了dystroglycan对配体lami-nin,neurexin和agrin的结合活性。我们表明,这种α-dystroglycan的翻译后生化和功能破坏在突变的肌营养不良症(myd)小鼠的肌肉和中枢神经系统中得到概括。我们证明了myd小鼠在大脑皮层,小脑和海马中有异常的神经元迁移,并显示了基底层的破坏。此外,myd小鼠还发现,dystroglycan通过与细胞外基质蛋白的相互作用将蛋白质靶向大脑中的功能位点。这些结果表明,在dystroglycan的生物合成过程中,至少三个不同的哺乳动物基因在收敛的翻译后加工途径中起作用,并且dystroglycan-ligand相互作用异常是肌肉营养不良与脑部异常的致病机制。

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