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荧光二维差异凝胶电泳在肌肉萎缩症研究中的蛋白质组学生物标志物发现工具的应用。

Application of fluorescence two-dimensional difference in-gel electrophoresis as a proteomic biomarker discovery tool in muscular dystrophy research.

机构信息

Department of Biology, National University of Ireland, Maynooth, Kildare, Ireland.

Department of Physiology II, University of Bonn, Bonn D-53115, Germany.

出版信息

Biology (Basel). 2013 Dec 2;2(4):1438-64. doi: 10.3390/biology2041438.

Abstract

In this article, we illustrate the application of difference in-gel electrophoresis for the proteomic analysis of dystrophic skeletal muscle. The mdx diaphragm was used as a tissue model of dystrophinopathy. Two-dimensional gel electrophoresis is a widely employed protein separation method in proteomic investigations. Although two-dimensional gels usually underestimate the cellular presence of very high molecular mass proteins, integral membrane proteins and low copy number proteins, this method is extremely powerful in the comprehensive analysis of contractile proteins, metabolic enzymes, structural proteins and molecular chaperones. This gives rise to two-dimensional gel electrophoretic separation as the method of choice for studying contractile tissues in health and disease. For comparative studies, fluorescence difference in-gel electrophoresis has been shown to provide an excellent biomarker discovery tool. Since aged diaphragm fibres from the mdx mouse model of Duchenne muscular dystrophy closely resemble the human pathology, we have carried out a mass spectrometry-based comparison of the naturally aged diaphragm versus the senescent dystrophic diaphragm. The proteomic comparison of wild type versus mdx diaphragm resulted in the identification of 84 altered protein species. Novel molecular insights into dystrophic changes suggest increased cellular stress, impaired calcium buffering, cytostructural alterations and disturbances of mitochondrial metabolism in dystrophin-deficient muscle tissue.

摘要

在本文中,我们展示了差异凝胶电泳在研究营养不良性骨骼肌蛋白质组学中的应用。mdx 膈肌被用作肌营养不良症的组织模型。二维凝胶电泳是蛋白质组学研究中广泛应用的蛋白质分离方法。尽管二维凝胶电泳通常低估了非常高分子质量蛋白、整合膜蛋白和低拷贝数蛋白的细胞存在,但这种方法在全面分析收缩蛋白、代谢酶、结构蛋白和分子伴侣方面非常强大。这使得二维凝胶电泳成为研究健康和疾病状态下收缩组织的首选方法。为了进行比较研究,荧光差异凝胶电泳已被证明是一种出色的生物标志物发现工具。由于 Duchenne 肌营养不良症 mdx 小鼠模型的老年膈肌纤维非常类似于人类病理学,我们已经对自然老化的膈肌与衰老的营养不良性膈肌进行了基于质谱的比较。野生型与 mdx 膈肌的蛋白质组比较鉴定出了 84 种改变的蛋白质种类。对营养不良变化的新的分子认识表明,在缺乏 dystrophin 的肌肉组织中,细胞应激增加,钙缓冲受损,细胞结构改变和线粒体代谢紊乱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e7a/4009800/a650ad32b80e/biology-02-01438-g001.jpg

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