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抗肌萎缩蛋白异构体Dp71在视网膜内界膜的定位表明Dp71在视网膜中具有独特的功能作用。

Localization of dystrophin isoform Dp71 to the inner limiting membrane of the retina suggests a unique functional contribution of Dp71 in the retina.

作者信息

Howard P L, Dally G Y, Wong M H, Ho A, Weleber R G, Pillers D A, Ray P N

机构信息

Department of Medical and Molecular Genetics, University of Toronto, Toronto, Ontario, Canada.

出版信息

Hum Mol Genet. 1998 Sep;7(9):1385-91. doi: 10.1093/hmg/7.9.1385.

Abstract

The electroretinograms (ERGs) of patients with Duchenne muscular dystrophy and an allelic variant of the mdx mouse (mdxCv3) have been shown to be abnormal. Analysis of five allelic variants of the mdx mouse with mutations in the dystrophin gene has shown that there is a correlation between the position of the mutation and the severity of the ERG abnormality. Three isoforms are expressed in the retina: Dp427, Dp260 and Dp71. Using indirect immunofluorescence and isoform-specific antibodies on retinal sections from three allelic mdx mouse strains, we have examined the localization of each of the isoforms. We show that Dp71 expression does not overlap with Dp427 and Dp260 expression at the outer plexiform layer (OPL). Instead, Dp71 is localized to the inner limiting membrane (ILM) and to retinal blood vessels. Moreover, we show that Dp260 and Dp71 differ structurally at their respective C-termini. In addition, we find that the proper localization of the beta-dystroglycan is dependent upon both Dp260 at the OPL and Dp71 expression at the ILM. Thus, Dp260 and Dp71 are non-redundant isoforms that are located at different sites within the retina yet have a common interaction with beta-dystroglycan. Our data suggest that both Dp71 and Dp260 contribute distinct but essential roles to retinal electrophysiology.

摘要

杜氏肌营养不良患者和mdx小鼠等位基因变体(mdxCv3)的视网膜电图(ERG)已被证明异常。对肌营养不良蛋白基因发生突变的mdx小鼠的五个等位基因变体的分析表明,突变位置与ERG异常的严重程度之间存在相关性。视网膜中表达三种同工型:Dp427、Dp260和Dp71。使用间接免疫荧光和针对三种等位基因mdx小鼠品系视网膜切片的同工型特异性抗体,我们检测了每种同工型的定位。我们发现,在外丛状层(OPL),Dp71的表达与Dp427和Dp260的表达不重叠。相反,Dp71定位于内界膜(ILM)和视网膜血管。此外,我们表明Dp260和Dp71在各自的C末端结构上有所不同。此外,我们发现β-肌营养不良聚糖的正确定位依赖于OPL处的Dp260和ILM处的Dp71表达。因此,Dp260和Dp71是位于视网膜不同部位但与β-肌营养不良聚糖有共同相互作用的非冗余同工型。我们的数据表明,Dp71和Dp260对视网膜电生理学都起着独特但至关重要的作用。

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