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首页> 外文期刊>Human Molecular Genetics >Plectin isoform 1-dependent nuclear docking of desmin networks affects myonuclear architecture and expression of mechanotransducers
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Plectin isoform 1-dependent nuclear docking of desmin networks affects myonuclear architecture and expression of mechanotransducers

机译:结蛋白网络的Plectin亚型1依赖性核对接会影响肌核结构和机械转导子的表达

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Plectin is a highly versatile cytoskeletal protein that acts as a mechanical linker between intermediate filament (IF) networks and various cellular structures. The protein is crucial for myofiber integrity. Its deficiency leads to severe pathological changes in skeletal muscle fibers of patients suffering from epidermolysis bullosa simplex with muscular dystrophy (EBS-MD). Skeletal muscle fibers express four major isoforms of plectin which are distinguished solely by alternative, relatively short, first exon-encoded N-terminal sequences. Each one of these isoforms is localized to a different subcellular compartment and plays a specific role in maintaining integrity and proper function(s) of myofibers. The unique role of individual isoforms is supported by distinct phenotypes of isoform-specific knockout mice and recently discovered mutations in first coding exons of plectin that lead to distinct, tissue-specific, pathological abnormalities in humans. In this study, we demonstrate that the lack of plectin isoform 1 (P1) in myofibers of mice leads to alterations of nuclear morphology, similar to those observed in various forms of MD. We show that P1-mediated targeting of desmin IFs to myonuclei is essential for maintenance of their typically spheroidal architecture as well as their proper positioning and movement along the myofiber. Furthermore, we show that P1 deficiency affects chromatin modifications and the expression of genes involved in various cellular functions, including signaling pathways mediating mechanotransduction. Mechanistically, P1 is shown to specifically interact with the myonuclear membrane-associated (BAR domain-containing) protein endophilin B. Our results open a new perspective on cytoskeleton-nuclear crosstalk via specific cytolinker proteins.
机译:Plectin是一种高度通用的细胞骨架蛋白,可充当中间丝(IF)网络和各种细胞结构之间的机械连接子。该蛋白质对于肌纤维完整性至关重要。它的缺乏导致患有表皮松解性大肌营养不良(EBS-MD)的患者的骨骼肌纤维发生严重的病理变化。骨骼肌纤维表达凝集素的四种主要同工型,仅通过替代的,相对短的,第一外显子编码的N端序列来区分。这些同工型中的每一个均位于不同的亚细胞区室中,并在维持肌纤维的完整性和适当功能中起特定作用。个体同工型的独特作用得到了同工型特异性基因敲除小鼠的独特表型的支持,并且最近发现了凝集素的第一个编码外显子中的突变,这些突变导致人类独特的组织特异性病理异常。在这项研究中,我们证明了小鼠肌纤维中缺乏凝集素同工型1(P1)会导致核形态改变,类似于在各种形式的MD中观察到的。我们表明,P1介导的结蛋白IF对肌核的靶向对于维持其典型的球状结构以及沿肌纤维的正确定位和运动至关重要。此外,我们表明P1缺乏会影响染色质修饰和参与各种细胞功能的基因表达,包括介导机械转导的信号通路。从机理上讲,P1与肌核膜相关蛋白(含BAR域)特异性相互作用。我们的研究结果为通过特定细胞连接蛋白的细胞骨架-核串扰开辟了新的视角。

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