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Co-expression networks between protein encoding mitochondrial genes and all the remaining genes in human tissues

机译:编码线粒体基因的蛋白质与人体组织中所有其他基因之间的共表达网络

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Recent advances in sequencing allow the study of all identified human genes (≈ 22,000 protein encoding genes), which have differential expression between tissues. However, current knowledge on gene interactions lags behind, especially when one of the elements encodes a mitochondrial protein (≈ 1500). Mitochondrial proteins are encoded either by mitochondrial DNA (mtDNA; 13 proteins) or by nuclear DNA (nDNA; the remaining), which implies a coordinated communication between the two genomes. Since mitochondria coordinate several life-critical cellular activities, namely energy production and cell death, deregulation of this communication is implicated in many complex diseases such as neurodegenerative diseases, cancer and diabetes. Thus, this work aimed to identify high co-expression groups between mitochondrial genes-all genes, and associated protein networks in several human tissues (Genotype-Tissue Expression database). We developed a pipeline and a web tree viewer that is available at GitHub (https://github.com/Pereira-lab/CoExpression). Biologically, we confirmed the existence of highly correlated pairs of mitochondrial-all protein encoding genes, which act in pathways of functional importance such as energy production and metabolite synthesis, especially in brain tissues. The strongest correlation between mtDNA genes are with genes encoded by this genome, showing that correlation among genes encoded by the same genome is more efficient.
机译:测序的最新进展允许研究所有已鉴定的人类基因(≈22,000个蛋白质编码基因),这些基因在组织之间表达差异。但是,有关基因相互作用的最新知识相对较晚,尤其是当其中一种元素编码线粒体蛋白时(≈1500)。线粒体蛋白由线粒体DNA(mtDNA; 13种蛋白质)或核DNA(nDNA;其余)编码,这意味着两个基因组之间的协调通讯。由于线粒体协调了几种至关重要的细胞活动,即能量产生和细胞死亡,因此这种通讯的失调涉及许多复杂的疾病,例如神经退行性疾病,癌症和糖尿病。因此,这项工作旨在鉴定线粒体基因-所有基因与几种人体组织中的相关蛋白网络之间的高共表达基团(基因型-组织表达数据库)。我们开发了一个管道和一个Web树查看器,可从GitHub(https://github.com/Pereira-lab/CoExpression)获得。从生物学上讲,我们确认存在高度相关的线粒体所有蛋白质编码基因对,这些基因在功能重要的途径中起作用,例如能量产生和代谢产物合成,尤其是在脑组织中。 mtDNA基因之间的最强关联与该基因组编码的基因相关,这表明同一基因组编码的基因之间的关联更为有效。

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