首页> 外文OA文献 >Emery-Dreifuss Muscular Dystrophy-Associated Mutant Forms of Lamin A Recruit the Stress Responsive Protein Ankrd2 into the Nucleus, Affecting the Cellular Response to Oxidative Stress
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Emery-Dreifuss Muscular Dystrophy-Associated Mutant Forms of Lamin A Recruit the Stress Responsive Protein Ankrd2 into the Nucleus, Affecting the Cellular Response to Oxidative Stress

机译:Lamin A的Emery-Dreifuss肌营养不良相关突变体形式将应激反应蛋白Ankrd2引入细胞核,影响细胞对氧化应激的反应

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摘要

Background: Ankrd2 is a stress responsive protein mainly expressed in muscle cells. Upon the application of oxidative stress, Ankrd2 translocates into the nucleus where it regulates the activity of genes involved in cellular response to stress. Emery-Dreifuss Muscular Dystrophy 2 (EDMD2) is a muscular disorder caused by mutations of the gene encoding lamin A, LMNA. As well as many phenotypic abnormalities, EDMD2 muscle cells also feature a permanent basal stress state, the underlying molecular mechanisms of which are currently unclear. Methods: Experiments were performed in EDMD2-lamin A overexpressing cell lines and EDMD2-affected human myotubes. Oxidative stress was produced by H2O2 treatment. Co-immunoprecipitation, cellular subfractionation and immunofluorescence analysis were used to validate the relation between Ankrd2 and forms of lamin A; cellular sensibility to stress was monitored by the analysis of Reactive Oxygen Species (ROS) release and cell viability. Results: Our data demonstrate that oxidative stress induces the formation of a complex between Ankrd2 and lamin A. However, EDMD2-lamin A mutants were able to bind and mislocalize Ankrd2 in the nucleus even under basal conditions. Nonetheless, cells co-expressing Ankrd2 and EDMD2-lamin A mutants were more sensitive to oxidative stress than the Ankrd2-wild type lamin A counterpart. Conclusions: For the first time, we present evidence that in muscle fibers from patients affected by EDMD2, Ankrd2 has an unusual nuclear localization. By introducing a plausible mechanism ruling this accumulation, our data hint at a novel function of Ankrd2 in the pathogenesis of EDMD2-affected cells.
机译:背景:Ankrd2是一种应激反应蛋白,主要在肌肉细胞中表达。在施加氧化应激后,Ankrd2易位到细胞核中,在其中调节参与细胞对应激反应的基因的活性。 Emery-Dreifuss肌营养不良症2(EDMD2)是一种肌肉疾病,由编码Lamin A,LMNA的基因突变引起。除许多表型异常外,EDMD2肌肉细胞还具有永久的基础应激状态,目前尚不清楚其潜在的分子机制。方法:在过表达EDMD2-lamin A的细胞系和受EDMD2影响的人肌管中进行实验。通过H2O2处理产生氧化应激。共免疫沉淀,细胞亚分离和免疫荧光分析被用来验证Ankrd2和层粘连蛋白A的形式之间的关系。通过分析活性氧(ROS)释放和细胞活力来监测细胞对应激的敏感性。结果:我们的数据表明,氧化应激诱导Ankrd2和层粘连蛋白A之间形成复合物。但是,即使在基础条件下,EDMD2-lamin A突变体也能够结合和错位Ankrd2在细胞核中。尽管如此,共表达Ankrd2和EDMD2-lamin A突变体的细胞比Ankrd2野生型lamin A对应物对氧化应激更敏感。结论:我们首次提供证据表明,在受EDMD2影响的患者的肌纤维中,Ankrd2具有异常的核定位。通过引入一种合理的机制来控制这种积累,我们的数据暗示了Ankrd2在EDMD2受影响的细胞的发病机理中的新功能。

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