Sunada Y, Bernier S M, Utani A, Yamada Y, Campbell K P
Howard Hughes Medical Institute, University of Iowa College of Medicine, Iowa City 52242, USA.
Hum Mol Genet. 1995 Jun;4(6):1055-61. doi: 10.1093/hmg/4.6.1055.
Murine dystrophia muscularis-2J (dy2J) is an autosomal recessive disorder characterized by muscular dystrophy and dysmyelination of peripheral nerve. Biochemical characterization of dy2J mice revealed the expression of a mutant laminin alpha 2 chain with a smaller molecular weight in the basal lamina of striated muscle and peripheral nerve. DNA sequencing of the alpha 2 chain cDNA amplified by RT-PCR from dy2J mice identified a novel and predominant transcript with a 171 base in-frame deletion. We also confirmed an underlying splice donor site mutation in the alpha 2 chain gene of the dy2J mouse. Translation of this variant transcript would result in the expression of a truncated alpha 2 chain having a 57 amino acid deletion (residues 34-90) and a substitution of Gln91Glu in the N-terminal domain VI, which is presumed to be involved in self-aggregation of laminin heterotrimers. Thus, the mutant alpha 2 chain could disrupt the formation of the laminin network and lead to muscle cell degeneration. Our results provide a molecular basis of muscular dystrophy and dysmyelination of peripheral nerve.
小鼠肌营养不良症-2J(dy2J)是一种常染色体隐性疾病,其特征为肌肉萎缩和外周神经脱髓鞘。对dy2J小鼠的生化特性分析显示,在横纹肌和外周神经的基膜中表达了一种分子量较小的突变型层粘连蛋白α2链。通过逆转录聚合酶链反应(RT-PCR)从dy2J小鼠中扩增出α2链cDNA进行DNA测序,鉴定出一种新的主要转录本,其有171个碱基的框内缺失。我们还证实了dy2J小鼠α2链基因中一个潜在的剪接供体位点突变。这种变异转录本的翻译将导致截短的α2链表达,该截短的α2链缺失57个氨基酸(第34-90位残基),并且在假定参与层粘连蛋白异源三聚体自我聚集的N端结构域VI中有Gln91Glu的替换。因此,突变的α2链可能破坏层粘连蛋白网络的形成并导致肌肉细胞变性。我们的结果为肌肉萎缩和外周神经脱髓鞘提供了分子基础。