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Upregulation of Hallmark Muscle Genes Protects Gne M743T/M743T Mutated Knock-In Mice From Kidney and Muscle Phenotype

机译:高音肌肉基因的上调保护来自肾脏和肌肉表型的GNE M743T / M743T突变敲击小鼠

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摘要

Background: Mutations in GNE cause a recessive, adult onset myopathy characterized by slowly progressive distal and proximal muscle weakness. Knock-in mice carrying the most frequent mutation in GNE myopathy patients, Gne M743T/M743T , usually die few days after birth from severe renal failure, with no muscle phenotype. However, a spontaneous sub-colony remains healthy throughout a normal lifespan without any kidney or muscle pathology. Objective: We attempted to decipher the molecular mechanisms behind these phenotypic differences and to determine the mechanisms preventing the kidney and muscles from disease. Methods: We analyzed the transcriptome and proteome of kidneys and muscles of sick and healthy Gne M743T/M743T mice. Results: The sick Gne M743T/M743T kidney was characterized by up-regulation of extra-cellular matrix degradation related processes and by down-regulation of oxidative phosphorylation and respiratory electron chain pathway, that was also observed in the asymptomatic muscles. Surprisingly, the healthy kidneys of the Gne M743T/M743T mice were characterized by up-regulation of hallmark muscle genes. In addition the asymptomatic muscles of the sick Gne M743T/M743T mice showed upregulation of transcription and translation processes. Conclusions: Overexpression of muscle physiology genes in healthy Gne M743T/M743T mice seems to define the protecting mechanism in these mice. Furthermore, the strong involvement of muscle related genes in kidney may bridge the apparent phenotypic gap between GNE myopathy and the knock-in Gne M743T/M743T mouse model and provide new directions in the study of GNE function in health and disease.
机译:背景:GNE中的突变导致隐性,成人发病的肌病,其特征在于缓慢进展远端和近端肌肉无效。敲击小鼠在GNE肌病患者中携带最常见的突变,GNE M743T / M743T,通常在出生后几天从严重的肾功能衰竭后,没有肌肉表型。然而,在没有任何肾脏或肌肉病理学的情况下,自发的子殖民地仍然是健康的。目的:我们试图破译这些表型差异背后的分子机制,并确定预防肾脏和疾病的肌肉的机制。方法:分析了肾脏和健康GNE M743T / M743T小鼠肾脏和肌肉的转录组和蛋白质组。结果:病人GNE M743T / M743T肾的特征在于,在无症状的肌肉中也观察到氧化磷酸化和呼吸电子链途径的下调。令人惊讶的是,GNE M743T / M743T小鼠的健康肾脏的特征是通过标志性肌肉基因的上调。此外,病人GNE M743T / M743T小鼠的无症状肌肉显示出转录和翻译过程的上调。结论:健康GNE M743T / M743T小鼠肌肉生理基因的过度表达似乎在这些小鼠中定义了保护机制。此外,肾脏中肌肉相关基因的强烈参与可能弥合GNE肌病和敲击性GNE M743T / M743T小鼠模型的表观表型差距,并在健康和疾病中的GNE功能研究中提供了新的方向。

著录项

  • 来源
    《Journal of neuromuscular diseases.》 |2020年第2期|共18页
  • 作者单位

    Bioinformatics Unit of the I-CORE at the Hebrew University and Hadassah Medical Center;

    Goldyne Savad Institute of Gene Therapy Hadassah Hebrew University Medical Center;

    Goldyne Savad Institute of Gene Therapy Hadassah Hebrew University Medical Center;

    Goldyne Savad Institute of Gene Therapy Hadassah Hebrew University Medical Center;

    Bioinformatics Unit of the I-CORE at the Hebrew University and Hadassah Medical Center;

    Bioinformatics Unit of the I-CORE at the Hebrew University and Hadassah Medical Center;

    Goldyne Savad Institute of Gene Therapy Hadassah Hebrew University Medical Center;

    Department of Neurology Hadassah Hebrew University Medical Center;

    Goldyne Savad Institute of Gene Therapy Hadassah Hebrew University Medical Center;

    Goldyne Savad Institute of Gene Therapy Hadassah Hebrew University Medical Center;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学与精神病学;
  • 关键词

    GNE myopathy; GNE mouse model; HIBM; RNA-Seq; proteomics;

    机译:GNE肌病;GNE小鼠模型;HIBM;RNA-SEQ;蛋白质组学;
  • 入库时间 2022-08-20 09:51:56

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