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首页> 外文期刊>Human Molecular Genetics >A promotive effect for halofuginone on membrane repair and synaptotagmin-7 levels in muscle cells of dysferlin-null mice
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A promotive effect for halofuginone on membrane repair and synaptotagmin-7 levels in muscle cells of dysferlin-null mice

机译:嗜睡素对肌肌细胞膜修复和Sysepotagmin-7水平的促进作用

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摘要

In the absence of dysferlin, skeletal muscle cells fail to reseal properly after injury, resulting in slow progress of the dysferlinopathy muscular dystrophy (MD). Halofuginone, a leading agent in preventing fibrosis in MDs, was tested for its effects on membrane resealing post-injury. A hypo-osmotic shock assay on myotubes derived from wild-type (Wt) and dysferlin-null (dysf(-/-)) mice revealed that pre-treatment with halofuginone reduces the percentage of membrane-ruptured myotubes only in dysf(-/-) myotubes. In laser-induced injury of isolated myofibers, halofuginone decreased the amount of FM1-43 at the injury site of dysf(-/-) myofibers while having no effect on Wt myofibers. These results implicate halofuginone in ameliorating muscle-cell membrane integrity in dysf(-/-) mice. Halofuginone increased lysosome scattering across the cytosol of dysf(-/-) primary myoblasts, in a protein kinase/extracellular signal-regulated protein kinase and phosphoinositide 3 kinase/Akt-dependent manner, in agreement with an elevation in lysosomal exocytotic activity in these cells. A spatial-and age-dependent synaptotagmin-7 (Syt-7) expression pattern was shown in dysf(-/-) versus Wt mice, suggesting that these pattern alterations are related to the disease progress and that sytnaptotagmin-7 may be compensating for the lack of dysferlin at least with regard to membrane resealing post-injury. While halofuginone did not affect patch-repair-complex key proteins, it further enhanced Syt-7 levels and its spread across the cytosol in dysr-myofibers and muscle tissue, and increased its co-localization with lysosomes. Together, the data imply a novel role for halofuginone in membrane-resealing events with Syt-7 possibly taking part in these events.
机译:在没有脓疱疹的情况下,损伤后骨骼肌细胞不能适当地重新抗炎,导致缺陷症肌肉营养不良(MD)的缓慢进展。霍食野原是一种防止MDS中纤维化的领先试剂,对重新损伤后膜的影响进行了测试。源自野生型(WT)和Dysf( - / - ))小鼠的肌管上的乳糜瘤次休克测定显示,用氟鲁甘啡酮预处理降低了膜破裂肌管的百分比( - /) - )myotubes。在激光诱导的孤立肌纤维损伤中,Halofuginone在Dysf( - / - )肌纤维的损伤部位下降,同时对WT mydibers没有影响。这些结果暗示了霍向义酮在软血( - / - )小鼠中改善肌肉细胞膜完整性。 Halofuginone在蛋白激酶/细胞外信号调节的蛋白激酶和磷酸亚膦腈3激酶/ Akt依赖性方式中增加溶酶体散射,其在蛋白激酶/细胞外信号调节的蛋白激酶和磷膦酸/ Akt依赖性的方式中,同意这些细胞中的溶酶体外核活性的升高。在Dysf(/ - / - )与WT小鼠中显示了空间和年龄依赖的Sybaptagmin-7(Syt-7)表达模式,表明这些模式改变与疾病进展有关,并且Sytnaptagmin-7可能是补偿至少在重新损伤后膜缺乏脓肿。虽然Halofuginone没有影响补丁修复复杂的关键蛋白,但它进一步增强了STT-7水平及其在肌瘤和肌肉组织中的细胞溶胶的涂抹,并增加了与溶酶体的共定位。这些数据在一起意味着Halofuginone在膜重新密封事件中的新的作用,可以参与这些事件。

著录项

  • 来源
    《Human Molecular Genetics》 |2018年第16期|共13页
  • 作者单位

    Hebrew Univ Jerusalem Dept Anim Sci POB 12 IL-76100 Rehovot Israel;

    PSL Res Univ Inst Curie Ctr Rech CNRS INSERM U1143 UMR 3666 Membrane Dynam &

    Mech Intracellular;

    PSL Res Univ Inst Curie Ctr Rech CNRS INSERM U1143 UMR 3666 Membrane Dynam &

    Mech Intracellular;

    UPMC Univ Paris 06 Sorbonne Univ Ctr Res Myol CNRS FRE 3617 UM76 INSERM U974 Paris France;

    Inst Anim Sci Volcani Ctr IL-52505 Bet Dagan Israel;

    Hebrew Univ Jerusalem Dept Anim Sci POB 12 IL-76100 Rehovot Israel;

  • 收录信息
  • 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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