A New Mouse Model of Limb-Girdle Muscular Dystrophy Type 2I Homozygous for the Common L276I Mutation Mimicking the Mild Phenotype in Humans

T. Krag, J. Vissing
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引用次数: 19

Abstract

Abstract Limb-girdle muscular dystrophy type 2I (LGMD2I) is caused by mutations in the Fukutin-related protein (FKRP) gene, leading to inadequate glycosylation of &agr;-dystroglycan, an important protein linking the extracellular matrix to the cytoskeleton. We created a mouse model of the common FKRP L276I mutation and a hemizygous FKRP L276I knockout model. We studied histopathology and protein expression in the models at different ages and found that homozygous FKRP L276I mice developed a mild progressive myopathy with increased muscle regeneration and fibrosis starting from 1 year of age. This was likely caused by progressive loss of &agr;-dystroglycan–specific glycosylation, which was decreased by 78% at 20 months. The homozygous FKRP knockout was embryonic lethal, but the hemizygous L276I model resembled the homozygous FKRP L276I model at comparable ages. These models emphasize the importance of FKRP in maintaining proper glycosylation of &agr;-dystroglycan. The mild progression in the homozygous FKRP L276I model resembles that in patients with LGMD2I who are homozygous for the L276I mutation. This animal model could, therefore, be relevant for understanding the pathophysiology of and developing a treatment strategy for the human disorder.
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模拟人类轻度表型的常见L276I突变的2I型四肢带状肌营养不良小鼠纯合模型
2I型肢体肌营养不良症(LGMD2I)是由福克汀相关蛋白(FKRP)基因突变引起的,导致&agr;-肌营养不良蛋白糖基化不足,而&agr;-肌营养不良蛋白是连接细胞外基质与细胞骨架的重要蛋白。我们建立了常见的FKRP L276I突变小鼠模型和半合子FKRP L276I敲除模型。我们研究了不同年龄模型的组织病理学和蛋白表达,发现纯合子FKRP L276I小鼠从1岁开始出现轻度进行性肌病,肌肉再生和纤维化增加。这可能是由于&agr;-糖醛酸异常特异性糖基化的逐渐丧失引起的,在20个月时减少了78%。纯合子FKRP敲除具有胚胎致死性,但半合子L276I模型在相当年龄时与纯合子FKRP L276I模型相似。这些模型强调了FKRP在维持&agr;-三聚糖酐适当糖基化中的重要性。纯合子FKRP L276I模型的轻度进展类似于L276I突变纯合子的LGMD2I患者。因此,这种动物模型可能与理解人类疾病的病理生理学和开发治疗策略有关。
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