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首页> 外文期刊>Brain pathology >ALS‐Associated Endoplasmic Reticulum Proteins in Denervated Skeletal Muscle: Implications for Motor Neuron Disease Pathology
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ALS‐Associated Endoplasmic Reticulum Proteins in Denervated Skeletal Muscle: Implications for Motor Neuron Disease Pathology

机译:在方便的骨骼肌中的Als相关的内质网蛋白:对运动神经元疾病病理的影响

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摘要

Abstract Alpha‐motoneurons and muscle fibres are structurally and functionally interdependent. Both cell types particularly rely on endoplasmic reticulum (ER/SR) functions. Mutations of the ER proteins VAPB, SigR1 and HSP27 lead to hereditary motor neuron diseases (MNDs). Here, we determined the expression profile and localization of these ER proteins/chaperons by immunohistochemistry and immunoblotting in biopsy and autopsy muscle tissue of patients with amyotrophic lateral sclerosis (ALS) and other neurogenic muscular atrophies (NMAs) and compared these patterns to mouse models of neurogenic muscular atrophy. Postsynaptic neuromuscular junction staining for VAPB was intense in normal human and mouse muscle and decreased in denervated Nmd 2J mouse muscle fibres. In contrast, VAPB levels together with other chaperones and autophagy markers were increased in extrasynaptic regions of denervated muscle fibres of patients with MNDs and other NMAs, especially at sites of focal myofibrillar disintegration (targets). These findings did not differ between NMAs due to ALS and other causes. G93A‐SOD1 mouse muscle fibres showed a similar pattern of protein level increases in denervated muscle fibres. In addition, they showed globular VAPB‐immunoreactive structures together with misfolded SOD1 protein accumulations, suggesting a primary myopathic change. Our findings indicate that altered expression and localization of these ER proteins and autophagy markers are part of the dynamic response of muscle fibres to denervation. The ER is particularly prominent and vulnerable in both muscle fibres and alpha‐motoneurons. Thus, ER pathology could contribute to the selective build‐up of degenerative changes in the neuromuscular axis in MNDs.
机译:摘要α-动机呋喃和肌肉纤维在结构上和功能上相互依赖。两种细胞类型特别依赖于内质网(ER / SR)功能。 ER蛋白VAPB,SIGR1和HSP27的突变导致遗传运动神经元疾病(MNDS)。在这里,我们通过免疫组织化学和免疫植物学和尸检肌肉组织的免疫组织化学和免疫印迹在肌萎缩横向硬化(ALS)和其他神经肌肉萎缩萎缩(NMA)中的活检和尸检肌肉组织中的表达谱和定位,并将这些模式与小鼠模型进行了比较神经源性肌肉萎缩。 VAPB的后腹膜神经肌肉结染色在正常人和小鼠肌肉中强烈,并且在后鼻涕2J小鼠肌肉纤维下降。相比之下,在MNDS和其他NMA患者的不障碍肌纤维的额外区域的额外区域中,VAPB水平与其他伴侣和自噬标记一起增加,特别是在局灶性肌原纤维崩解(靶标)的位点。由于ALS和其他原因,这些发现在NMA之间没有差异。 G93A-SOD1小鼠肌纤维显示出类似的肌肉纤维的蛋白质水平模式。此外,它们表现出球状VAPB-免疫反应性结构以及错误的SOD1蛋白质积累,表明主要的近视变化。我们的研究结果表明,这些ER蛋白和自噬标记物的改变的表达和定位是肌肉纤维对假期的动态响应的一部分。 ER在肌肉纤维和α-运动神经元中特别突出和易受伤害。因此,ER病理可以有助于选择性地积聚MNDS中神经血型轴的退行性变化。

著录项

  • 来源
    《Brain pathology 》 |2017年第6期| 共14页
  • 作者单位

    Institute of Neuropathology RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen;

    Institute of Neuropathology RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen;

    Institute of Neuropathology RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen;

    Institute of Neuropathology RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen;

    Institute of Clinical Neurobiology University of Würzburg Versbacherstr. 5Würzburg 97078 Germany;

    Institute of Clinical Neurobiology University of Würzburg Versbacherstr. 5Würzburg 97078 Germany;

    Institute of Neuropathology RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen;

    Institute of Neuropathology RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen;

    Institute of Neuropathology RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen;

    Institute of Neuroanatomy RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen Germany;

    Institute of Neuroanatomy RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen Germany;

    Department of NeurologyDistrict Hospital SiegenSiegen 57076 Germany;

    Department of NeurologyDistrict Hospital SiegenSiegen 57076 Germany;

    Institute of Neuropathology RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen;

    Academic Medical Centre Meibergdreef 91105 AZ Amsterdam The Netherlands;

    Academic Medical Centre Meibergdreef 91105 AZ Amsterdam The Netherlands;

    Institute of Clinical Neurobiology University of Würzburg Versbacherstr. 5Würzburg 97078 Germany;

    Institute of Neuropathology RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen;

    Institute of Neuropathology RWTH Aachen University Medical School Pauwelsstr. 3052074 Aachen;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 病理学 ;
  • 关键词

    ALS; Motor neuron disease (MND); Neurogenic muscular atrophy (NMA); Neuromuscular junction (NMJ); ER chaperones; VAPB; Sigma Receptor 1 (SigR1);

    机译:als;运动神经元疾病(MND);神经源性肌肉萎缩(NMA);神经肌肉结(NMJ);ER伴侣;VAPB;SIGMA受体1(SIGR1);

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