首页> 外文期刊>Clinical proteomics. >Label-free mass spectrometric analysis reveals complex changes in the brain proteome from the mdx-4cv mouse model of Duchenne muscular dystrophy
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Label-free mass spectrometric analysis reveals complex changes in the brain proteome from the mdx-4cv mouse model of Duchenne muscular dystrophy

机译:无标记的质谱分析揭示了来自Duchenne肌营养不良的MDX-4CV小鼠模型脑蛋白质组的复杂变化

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Background X-linked muscular dystrophy is a primary disease of the neuromuscular system. Primary abnormalities in the Dmd gene result in the absence of the full-length isoform of the membrane cytoskeletal protein dystrophin. Besides progressive skeletal muscle wasting and cardio-respiratory complications, developmental cognitive deficits and behavioural abnormalities are clinical features of Duchenne muscular dystrophy. In order to better understand the mechanisms that underlie impaired brain functions in Duchenne patients, we have carried out a proteomic analysis of total brain extracts from the mdx-4cv mouse model of dystrophinopathy. Results The comparative proteomic profiling of the mdx-4cv brain revealed a significant increase in 39 proteins and a decrease in 7 proteins. Interesting brain tissue-associated proteins with an increased concentration in the mdx-4cv animal model were represented by the glial fibrillary acidic protein GFAP, the neuronal Ca2+-binding protein calretinin, annexin AnxA5, vimentin, the neuron-specific enzyme ubiquitin carboxyl-terminal hydrolase isozyme L1, the dendritic spine protein drebrin, the cytomatrix protein bassoon of the nerve terminal active zone, and the synapse-associated protein SAP97. Decreased proteins were identified as the nervous system-specific proteins syntaxin-1B and syntaxin-binding protein 1, as well as the plasma membrane Ca2+-transporting ATPase PMCA2 that is mostly found in the brain cortex. The differential expression patterns of GFAP, vimentin, PMCA2 and AnxA5 were confirmed by immunoblotting. Increased GFAP levels were also verified by immunofluorescence microscopy. Conclusions The large number of mass spectrometrically identified proteins with an altered abundance suggests complex changes in the mdx-4cv brain proteome. Increased levels of the glial fibrillary acidic protein, an intermediate filament component that is uniquely associated with astrocytes in the central nervous system, imply neurodegeneration-associated astrogliosis. The up-regulation of annexin and vimentin probably represent compensatory mechanisms involved in membrane repair and cytoskeletal stabilization in the absence of brain dystrophin. Differential alterations in the Ca2+-binding protein calretinin and the Ca2+-pumping protein PMCA2 suggest altered Ca2+-handling mechanisms in the Dp427-deficient brain. In addition, the proteomic findings demonstrated metabolic adaptations and functional changes in the central nervous system from the dystrophic phenotype. Candidate proteins can now be evaluated for their suitability as proteomic biomarkers and their potential in predictive, diagnostic, prognostic and/or therapy-monitoring approaches to treat brain abnormalities in dystrophinopathies.
机译:背景技术X型肌营养不良症是神经肌肉系统的主要疾病。 DMD基因中的初级异常导致膜细胞骨蛋白营养蛋白的全长同种型。除了进行性骨骼肌浪费和心血管呼吸并发症外,发育认知缺陷和行为异常是Duchenne肌营养不良的临床特征。为了更好地了解杜氏患者脑功能受损的机制,我们对从Dystophinophy的MDX-4CV小鼠模型进行了总脑提取物的蛋白质组学分析。结果MDX-4CV脑的比较蛋白质组学分析显示39蛋白的显着增加和7种蛋白质的降低。 MDX-4CV动物模型中浓度增加的有趣脑组织相关蛋白由胶质纤维酸性蛋白GFAP,神经元CA2 + - 粘接蛋白Calretinin,annexin ana5,Vimentin,神经元特异性酶蛋白羧基 - 末端水解酶Isozyme L1,树突脊柱蛋白吐温,神经末端有源区的细胞瘤蛋白鲈鱼,以及突触相关蛋白质SAP97。将蛋白质减少作为神经系统特异性蛋白质棘突蛋白-1b和棘突结合蛋白1,以及血浆膜Ca2 + -Transporting ATPase PMCA2,其主要在脑皮层中发现。通过免疫印迹确认GFAP,Vimentin,PMCA2和ANXA5的差异表达模式。通过免疫荧光显微镜也验证了GFAP水平的增加。结论具有改变丰度的大量质谱鉴定蛋白表明MDX-4CV脑蛋白质组的复杂变化。胶质纤维酸性蛋白质的水平增加,中间长丝组分,其与中枢神经系统中的星形胶质细胞具有独特相关的,意味着神经变性相关的星形症。附睾蛋白的上调可能代表脑营养蛋白没有脑膜修复和细胞骨骼稳定中的补偿机制。 Ca2 + - 桥接蛋白Calretinin和Ca2 + -Pumping蛋白PMCA2的差异改变表明DP427缺陷型大脑中的CA2 +手柄机制改变。此外,蛋白质组学发现证明了来自营养不良表型中枢神经系统的代谢适应和功能变化。现在可以评估候选蛋白作为蛋白质组学生物标志物的适用性及其在预测,诊断,预后和/或治疗 - 监测方法中的潜力,以治疗DoStophinophaties中的脑异常。

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