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Coexpression within Integrated Mitochondrial Pathways Reveals Different Networks in Normal and Chemically Treated Transcriptomes

机译:整合线粒体途径内的共表达揭示了正常和化学处理的转录组中的不同网络。

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As energy producers, mitochondria play a pivotal role in multiple cellular processes. Although several lines of evidence suggest that differential expression of mitochondrial respiratory complexes (MRCs) has a significant impact on mitochondrial function, the role of integrated MRCs in the whole coexpression network has yet to be revealed. In this study, we construct coexpression networks based on microarray datasets from different tissues and chemical treatments to explore the role of integrated MRCs in the coexpression network and the effects of different chemicals on the mitochondrial network. By grouping MRCs as one seed target, the hypergeometric distribution allowed us to identify genes that are significantly coexpress with whole MRCs. Coexpression among 46 MRC genes (approximately 78% of MRC genes tested) was significant in the normal tissue transcriptome dataset. These MRC genes are coexpressed with genes involved in the categories "muscle system process," "metabolic process," and "neurodegenerative disease pathways," whereas, in the chemically treated tissues, coexpression of these genes mostly disappeared. These results indicate that chemical stimuli alter the normal coexpression network of MRC genes. Taken together, the datasets obtained from the different coexpression networks are informative about mitochondrial biogenesis and should contribute to understanding the side effects of drugs on mitochondrial function.
机译:线粒体作为能源生产者,在多种细胞过程中起着举足轻重的作用。尽管有几条证据表明线粒体呼吸复合物(MRC)的差异表达对线粒体功能有重大影响,但整合的MRC在整个共表达网络中的作用尚待揭示。在这项研究中,我们基于来自不同组织和化学治疗的微阵列数据集构建共表达网络,以探索整合MRC在共表达网络中的作用以及不同化学物质对线粒体网络的影响。通过将MRCs分组为一个种子目标,超几何分布使我们能够鉴定与整个MRCs共表达的基因。在正常组织转录组数据集中,有46个MRC基因(约占测试的MRC基因的78%)之间的共表达是显着的。这些MRC基因与“肌肉系统过程”,“代谢过程”和“神经退行性疾病途径”类别中涉及的基因共表达,而在经过化学处理的组织中,这些基因的共表达大部分消失。这些结果表明化学刺激改变了MRC基因的正常共表达网络。综上所述,从不同的共表达网络获得的数据集可提供有关线粒体生物发生的信息,应有助于理解药物对线粒体功能的副作用。

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