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COL4A1 Mutations Cause Ocular Dysgenesis, Neuronal Localization Defects, and Myopathy in Mice and Walker-Warburg Syndrome in Humans

机译:COL4A1突变导致小鼠眼部发育不全,神经元定位缺陷和肌病以及沃克沃伯格综合征

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摘要

Muscle-eye-brain disease (MEB) and Walker Warburg Syndrome (WWS) belong to a spectrum of autosomal recessive diseases characterized by ocular dysgenesis, neuronal migration defects, and congenital muscular dystrophy. Until now, the pathophysiology of MEB/WWS has been attributed to alteration in dystroglycan post-translational modification. Here, we provide evidence that mutations in a gene coding for a major basement membrane protein, collagen IV alpha 1 (COL4A1), are a novel cause of MEB/WWS. Using a combination of histological, molecular, and biochemical approaches, we show that heterozygous Col4a1 mutant mice have ocular dysgenesis, neuronal localization defects, and myopathy characteristic of MEB/WWS. Importantly, we identified putative heterozygous mutations in COL4A1 in two MEB/WWS patients. Both mutations occur within conserved amino acids of the triple-helix-forming domain of the protein, and at least one mutation interferes with secretion of the mutant proteins, resulting instead in intracellular accumulation. Expression and posttranslational modification of dystroglycan is unaltered in Col4a1 mutant mice indicating that COL4A1 mutations represent a distinct pathogenic mechanism underlying MEB/WWS. These findings implicate a novel gene and a novel mechanism in the etiology of MEB/WWS and expand the clinical spectrum of COL4A1-associated disorders.
机译:肌肉眼脑疾病(MEB)和沃克华堡综合征(WWS)属于常染色体隐性疾病谱系,其特征是眼球发育不全,神经元迁移缺陷和先天性肌营养不良。迄今为止,MEB / WWS的病理生理学一直归因于营养不良后翻译修饰的改变。在这里,我们提供的证据表明,编码主要基底膜蛋白胶原IVα1(COL4A1)的基因中的突变是MEB / WWS的新病因。使用组织学,分子和生化方法的组合,我们显示杂合Col4a1突变小鼠具有眼发育不全,神经元定位缺陷和MEB / WWS的肌病特征。重要的是,我们确定了两名MEB / WWS患者中COL4A1的假定杂合突变。两种突变都发生在蛋白质三螺旋形成域的保守氨基酸内,并且至少一个突变干扰了突变蛋白质的分泌,从而导致细胞内积累。 dystroglycan的表达和翻译后修饰在Col4a1突变小鼠中未改变,表明COL4A1突变代表了MEB / WWS的独特致病机制。这些发现暗示了MEB / WWS病因中的新基因和新机制,并扩大了与COL4A1相关的疾病的临床范围。

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