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Misregulation of calcium-handling proteins promotes hyperactivation of calcineurin-NFAT signaling in skeletal muscle of DM1 mice

机译:钙处理蛋白质的误解促进DM1小鼠骨骼肌中钙肌苷-NFAT信号传导的多动激活

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摘要

Myotonic Dystrophy type 1 (DM1) is caused by an expansion of CUG repeats in DMPK mRNAs. This mutation affects alternative splicing through misregulation of RNA-binding proteins. Amongst pre-mRNAs that are mis-spliced, several code for proteins involved in calcium homeostasis suggesting that calcium-handling and signaling are perturbed in DM1. Here, we analyzed expression of such proteins in DM1 mouse muscle. We found that the levels of several sarcoplasmic reticulum proteins (SERCA1, sarcolipin and calsequestrin) are altered, likely contributing to an imbalance in calcium homeostasis. We also observed that calcineurin (CnA) signaling is hyperactivated in DM1 muscle. Indeed, CnA expression and phosphatase activity are both markedly increased in DM1 muscle. Coherent with this, we found that activators of the CnA pathway (MLP, FHL1) are also elevated. Consequently, NFATc1 expression is increased in DM1 muscle and becomes relocalized to myonuclei, together with an up-regulation of its transcriptional targets (RCAN1.4 and myoglobin). Accordingly, DM1 mouse muscles display an increase in oxidative metabolism and fiber hypertrophy. To determine the functional consequences of this CnA hyperactivation, we administered cyclosporine A, an inhibitor of CnA, to DM1 mice. Muscles of treated DM1 mice showed an increase in CUGBP1 levels, and an exacerbation of key alternative splicing events associated with DM1. Finally, inhibition of CnA in cultured human DM1 myoblasts also resulted in a splicing exacerbation of the insulin receptor. Together, these findings show for the first time that calcium-CnA signaling is hyperactivated in DM1 muscle and that such hyperactivation represents a beneficial compensatory adaptation to the disease.
机译:强直性肌营养不良1型(DM1)是由DMPK mRNA中CUG重复序列的扩增引起的。这种突变通过RNA结合蛋白的错误调节影响选择性剪接。在错误剪接的前mRNAs中,一些参与钙稳态的蛋白质代码表明DM1中的钙处理和信号传导受到干扰。在这里,我们分析了这种蛋白在DM1小鼠肌肉中的表达。我们发现几种肌浆网蛋白(SERCA1、肌凝素和钙螯合素)的水平发生改变,可能导致钙稳态失衡。我们还观察到钙调神经磷酸酶(CnA)信号在DM1肌肉中过度激活。事实上,在DM1肌肉中CnA表达和磷酸酶活性都显著增加。与此一致,我们发现CnA途径的激活物(MLP,FHL1)也升高。因此,NFATc1在DM1肌肉中的表达增加,并重新定位到肌核,同时上调其转录靶点(RCAN1.4和肌红蛋白)。因此,DM1小鼠肌肉的氧化代谢和纤维肥大增加。为了确定CnA过度激活的功能后果,我们给DM1小鼠服用CnA抑制剂环孢素A。经治疗的DM1小鼠的肌肉显示CUGBP1水平增加,与DM1相关的关键选择性剪接事件加剧。最后,在培养的人DM1成肌细胞中抑制CnA也会导致胰岛素受体的剪接加重。总之,这些发现首次表明,DM1肌肉中的钙CnA信号过度激活,这种过度激活代表了对该疾病有益的代偿性适应。

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  • 来源
    《Human Molecular Genetics》 |2017年第12期|共15页
  • 作者单位

    Univ Ottawa Fac Med Dept Cellular &

    Mol Med 451 Smyth Rd Ottawa ON K1H 8M5 Canada;

    Univ Ottawa Fac Med Dept Cellular &

    Mol Med 451 Smyth Rd Ottawa ON K1H 8M5 Canada;

    Univ Ottawa Fac Med Dept Cellular &

    Mol Med 451 Smyth Rd Ottawa ON K1H 8M5 Canada;

    Concordia Univ Fac Arts &

    Sci Dept Exercise Sci Montreal PQ Canada;

    Univ Ottawa Fac Med Dept Cellular &

    Mol Med 451 Smyth Rd Ottawa ON K1H 8M5 Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

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