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Linking cytoarchitecture to metabolism: sarcolemma-associated plectin affects glucose uptake by destabilizing microtubule networks in mdx myofibers

机译:将细胞结构与代谢联系起来:肌膜相关的血凝素通过使mdx肌纤维中的微管网络不稳定来影响葡萄糖的摄取。

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摘要

BackgroundDuchenne muscular dystrophy (DMD) is one of the most frequent forms of muscular disorders. It is caused by the absence of dystrophin, a core component of the sarcolemma-associated junctional complex that links the cytoskeleton to the extracellular matrix. We showed previously that plectin 1f (P1f), one of the major muscle-expressed isoforms of the cytoskeletal linker protein plectin, accumulates at the sarcolemma of DMD patients as well as of mdx mice, a widely studied animal model for DMD.Based on plectin’s dual role as structural protein and scaffolding platform for signaling molecules, we speculated that the dystrophic phenotype observed after loss of dystrophin was caused, at least to some extent, by excess plectin. Thus, we hypothesized that elimination of plectin expression in mdx skeletal muscle, while probably resulting in an overall more severe phenotype, may lead to a partial phenotype rescue. In particular, we wanted to assess whether excess sarcolemmal plectin contributes to the dysregulation of sugar metabolism in mdx myofibers.
机译:背景杜氏肌营养不良症(DMD)是最常见的一种肌肉疾病。它是由于缺乏肌营养不良蛋白引起的,肌营养不良蛋白是肌膜相关联结复合物的核心成分,肌营养不良蛋白将细胞骨架连接到细胞外基质。我们先前已经证明了Plectin 1f(P1f)是细胞骨架连接蛋白Plectin的主要肌肉表达同种型之一,它在DMD患者以及mdx小鼠的肌膜中积累,这是DMD广泛研究的动物模型。作为信号分子的结构蛋白和支架平台的双重作用,我们推测在肌营养不良蛋白丧失后观察到的营养不良表型至少在某种程度上是由过量的血凝素引起的。因此,我们假设消除mdx骨骼肌中Plectin的表达,虽然可能导致总体上更为严重的表型,但可能导致部分表型的抢救。特别是,我们想评估是否过多的肌膜凝集素会导致mdx肌纤维糖代谢异常。

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