首页> 外文期刊>Journal of proteome research >Label-Free Quantitative Proteomic Profiling Identifies Disruption of Ubiquitin Homeostasis As a Key Driver of Schwann Cell Defects in Spinal Muscular Atrophy
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Label-Free Quantitative Proteomic Profiling Identifies Disruption of Ubiquitin Homeostasis As a Key Driver of Schwann Cell Defects in Spinal Muscular Atrophy

机译:无标签的定量蛋白质组学分析确定泛素稳态的破坏,作为脊柱肌肉萎缩中雪旺氏细胞缺陷的关键驱动力

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摘要

Low levels of survival of motor neuron (SMN) protein cause the neuromuscular disease spinal muscular atrophy (SMA), characterized by degeneration of lower motor neurons and atrophy of skeletal muscle. Recent work demonstrated that low levels of SMN also trigger pathological changes in Schwann cells, leading to abnormal axon myelination and disrupted deposition of extracellular matrix proteins in peripheral nerve. However, the molecular pathways linking SMN depletion to intrinsic defects in Schwann cells remained unclear. Label-free proteomics analysis of Schwann cells isolated from SMA mouse peripheral nerve revealed widespread changes to the Schwann cell proteome, including disruption to growth/proliferation, cell death/survival, and molecular transport pathways. Functional clustering analyses revealed significant disruption to a number of proteins contributing to ubiquitination pathways, including reduced levels of ubiquitin-like modifier activating enzyme 1 (Uba1). Pharmacological suppression of Uba1 in Schwann cells was sufficient to reproduce the defective myelination phenotype seen in SMA. These findings demonstrate an important role for SMN protein and ubiquitin-dependent pathways in maintaining Schwann cell homeostasis and provide significant additional experimental evidence supporting a key role for ubiquitin pathways and, Uba1 in particular, in driving SMA pathogenesis across a broad range of cells and tissues.
机译:运动神经元(SMN)蛋白的低水平存活会导致神经肌肉疾病脊髓性肌萎缩症(SMA),其特征是下部运动神经元变性和骨骼肌萎缩。最近的研究表明,低水平的SMN还会触发雪旺氏细胞的病理变化,从而导致异常的轴突髓鞘形成并破坏周围神经中胞外基质蛋白的沉积。然而,尚不清楚将SMN耗竭与雪旺细胞内在缺陷联系起来的分子途径。从SMA小鼠外周神经分离的雪旺细胞的无标记蛋白质组学分析显示,雪旺细胞蛋白质组发生了广泛的变化,包括生长/增殖,细胞死亡/存活和分子转运途径的破坏。功能聚类分析表明,对导致泛素化途径的许多蛋白质的破坏都很大,包括降低了泛素样修饰物激活酶1(Uba1)的水平。雪旺细胞中Uba1的药理抑制作用足以重现SMA中出现的有缺陷的髓鞘表型。这些发现证明SMN蛋白和泛素依赖性途径在维持Schwann细胞体内平衡方面起着重要作用,并提供重要的实验证据,支持泛素途径,尤其是Uba1在广泛的细胞和组织中驱动SMA发病机理中发挥关键作用。

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