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肌萎缩侧索硬化症患者骨骼肌中的线粒体网络基因。

Mitochondrial network genes in the skeletal muscle of amyotrophic lateral sclerosis patients.

机构信息

Institute of Anatomy and Cell Biology, School of Medicine, Università Cattolica del Sacro Cuore, Rome, Italy.

出版信息

PLoS One. 2013;8(2):e57739. doi: 10.1371/journal.pone.0057739. Epub 2013 Feb 28.

Abstract

Recent evidence suggested that muscle degeneration might lead and/or contribute to neurodegeneration, thus it possibly play a key role in the etiopathogenesis and progression of amyotrophic lateral sclerosis (ALS). To test this hypothesis, this study attempted to categorize functionally relevant genes within the genome-wide expression profile of human ALS skeletal muscle, using microarray technology and gene regulatory network analysis. The correlation network structures significantly change between patients and controls, indicating an increased inter-gene connection in patients compared to controls. The gene network observed in the ALS group seems to reflect the perturbation of muscle homeostasis and metabolic balance occurring in affected individuals. In particular, the network observed in the ALS muscles includes genes (PRKR1A, FOXO1, TRIM32, ACTN3, among others), whose functions connect the sarcomere integrity to mitochondrial oxidative metabolism. Overall, the analytical approach used in this study offer the possibility to observe higher levels of correlation (i.e. common expression trends) among genes, whose function seems to be aberrantly activated during the progression of muscle atrophy.

摘要

最近的证据表明,肌肉退化可能导致和/或促成神经退行性变,因此它可能在肌萎缩侧索硬化症 (ALS) 的发病机制和进展中起关键作用。为了验证这一假设,本研究试图使用微阵列技术和基因调控网络分析,对人类 ALS 骨骼肌全基因组表达谱中的功能相关基因进行分类。患者和对照组之间的相关网络结构发生显著变化,表明与对照组相比,患者的基因间连接增加。在 ALS 组中观察到的基因网络似乎反映了受影响个体中肌肉内稳态和代谢平衡的破坏。特别是,在 ALS 肌肉中观察到的网络包括基因(PRKR1A、FOXO1、TRIM32、ACTN3 等),其功能将肌节完整性与线粒体氧化代谢联系起来。总的来说,本研究中使用的分析方法提供了观察基因之间更高水平相关性(即共同表达趋势)的可能性,这些基因的功能似乎在肌肉萎缩进展过程中异常激活。

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