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Golgi Complex Organization in Skeletal Muscle: A Role for Golgi-Mediated Glycosylation in Muscular Dystrophies?

机译:高尔基体骨骼肌中的复杂组织:高尔基体介导的糖基化在营养不良中的作用?

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The Golgi complex (GC) is the central organelle of the classical secretory pathway, and it receives, modifies and packages proteins and lipids en route to their intracellular or extracellular destinations. Recent studies of congenital muscular dystrophies in skeletal muscle suggest an exciting new role for an old and well-established function of the GC: glycosylation. Glycosylation is the exquisitely regulated enzymatic addition of nucleotide sugars to proteins and lipids mediated by glycosyltransferases (GTs). Mutations in putative Golgi-resident GTs, fukutin, fukutin-related protein and large1 cause these progressive muscle-wasting diseases. The appropriate localization of GTs to specific subcompartments of the Golgi is critical for the correct assembly line-like addition of glycan groups to proteins and lipids as they pass through the GC. Consequently, these studies of congenital muscular dystrophies have focused attention on the organization and function of the GC in skeletal muscle. In contrast to other cells and tissues, the GC in skeletal muscle has received relatively little attention; however, in recent years, several studies have shown that GC distribution in muscle is highly dynamic or plastic and adopts different distributions in muscle cells undergoing myo-genesis, denervation, regeneration and maturation. Here, we review the current understanding of the dynamic regulation of GC organization in skeletal muscle and focus on the targeting of fukutin, fukutin-related protein and large1 to the GC in muscle cells.
机译:高尔基体(GC)是经典分泌途径的中心细胞器,它在到达其细胞内或细胞外目的地的过程中接收,修饰和包装蛋白质和脂质。骨骼肌中先天性肌营养不良的最新研究表明,GC的旧功能已确立的功能具有令人兴奋的新作用:糖基化。糖基化是核苷酸糖向糖基转移酶(GTs)介导的蛋白质和脂质的精细调控的酶促加成。假定的高尔基体GT,福建蛋白,福建蛋白相关蛋白和large1的突变会导致这些进行性肌肉萎缩性疾病。 GT正确定位于高尔基体的特定子区对于在蛋白质和脂质通过GC时向蛋白质和脂质中正确组装线状添加聚糖基至关重要。因此,这些对先天性肌营养不良的研究将注意力集中在骨骼肌中GC的组织和功能上。与其他细胞和组织相比,骨骼肌中的GC受到的关注相对较少。然而,近年来,一些研究表明,GC在肌肉中的分布是高度动态的或可塑性的,并且在经历成肌,去神经,再生和成熟的肌肉细胞中采用不同的分布。在这里,我们回顾当前对骨骼肌中GC组织动态调节的理解,并着重于将福建蛋白,与福建蛋白相关的蛋白和large1靶向肌肉细胞中的GC。

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