首页> 外文期刊>The American Journal of Human Genetics >Deficiency of Dol-P-Man synthase subunit DPM3 bridges the congenital disorders of glycosylation with the dystroglycanopathies.
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Deficiency of Dol-P-Man synthase subunit DPM3 bridges the congenital disorders of glycosylation with the dystroglycanopathies.

机译:Dol-P-Man合酶亚基DPM3的缺乏弥补了先天性糖基化疾病与营养不良性糖病的桥梁。

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摘要

Alpha-dystroglycanopathies such as Walker Warburg syndrome represent an important subgroup of the muscular dystrophies that have been related to defective O-mannosylation of alpha-dystroglycan. In many patients, the underlying genetic etiology remains unsolved. Isolated muscular dystrophy has not been described in the congenital disorders of glycosylation (CDG) caused by N-linked protein glycosylation defects. Here, we present a genetic N-glycosylation disorder with muscular dystrophy in the group of CDG type I. Extensive biochemical investigations revealed a strongly reduced dolichol-phosphate-mannose (Dol-P-Man) synthase activity. Sequencing of the three DPM subunits and complementation of DPM3-deficient CHO2.38 cells showed a pathogenic p.L85S missense mutation in the strongly conserved coiled-coil domain of DPM3 that tethers catalytic DPM1 to the ER membrane. Cotransfection experiments in CHO cells showed a reduced binding capacity of DPM3(L85S) for DPM1. Investigation of the four Dol-P-Man-dependent glycosylation pathways in the ER revealed strongly reduced O-mannosylation of alpha-dystroglycan in a muscle biopsy, thereby explaining the clinical phenotype of muscular dystrophy. This mild Dol-P-Man biosynthesis defect due to DPM3 mutations is a cause for alpha-dystroglycanopathy, thereby bridging the congenital disorders of glycosylation with the dystroglycanopathies.
机译:阿尔法营养不良性糖病,如沃克·沃伯格综合征,代表了肌营养不良症的一个重要亚组,该疾病与α-营养不良糖蛋白的O-甘露糖基化缺陷有关。在许多患者中,潜在的遗传病因仍未解决。在由N-连接蛋白糖基化缺陷引起的先天性糖基化(CDG)疾病中,尚未描述过孤立的肌营养不良症。在这里,我们介绍了I型CDG组中具有肌营养不良症的遗传性N-糖基化疾病。广泛的生化研究表明,二羟磷酸-甘露糖(Dol-P-Man)合酶活性大大降低。三个DPM亚基的测序和DPM3缺失的CHO2.38细胞的互补在DPM3的高度保守的卷曲螺旋结构域中显示致病性p.L85S错义突变,该突变将催化DPM1束缚在ER膜上。 CHO细胞中的共转染实验显示DPM3(L85S)与DPM1的结合能力降低。对内质网中四个Dol-P-Man依赖性糖基化途径的研究显示,肌肉活检中α-dystroglycan的O-甘露糖基化程度大大降低,从而解释了肌营养不良的临床表型。 DPM3突变引起的这种轻微的Dol-P-Man生物合成缺陷是导致α-营养不良性糖病的原因,从而将先天性糖基化疾病与营养不良性糖病联系起来。

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