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Epigenetic Variability Confounds Transcriptome but Not Proteome Profiling for Coexpression-based Gene Function Prediction

机译:表观遗传变异混淆转录组,但不是用于基于共抑制的基因功能预测的蛋白质组分析

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摘要

Genes are often coexpressed with their genomic neighbors, even if these are functionally unrelated. For small expression changes driven by genetic variation within the same cell type, non-functional mRNA coexpression is not propagated to the protein level. However, it is unclear if protein levels are also buffered against any nonfunctional mRNA coexpression accompanying large, regulated changes in the gene expression program, such as those occurring during cell differentiation. Here, we address this question by analyzing mRNA and protein expression changes for housekeeping genes across 20 mouse tissues. We find that a large proportion of mRNA coexpression is indeed non-functional and does not lead to coexpressed proteins. Chromosomal proximity of genes explains a proportion of this nonfunctional mRNA coexpression. However, the main driver of non-functional mRNA coexpression across mouse tissues is epigenetic similarity. Both factors together provide an explanation for why monitoring protein coexpression outperforms mRNA coexpression data in gene function prediction. Furthermore, this suggests that housekeeping genes translocating during evolution within genomic subcompartments might maintain their broad expression pattern.
机译:即使这些功能无关,基因通常与其基因组邻居共同表达。对于通过同一细胞类型内的遗传变异驱动的小表达,非功能性mRNA共表达不会传播到蛋白质水平。然而,目前尚不清楚蛋白质水平是否也缓冲对基因表达程序中的大规模变化的任何非功能mRNA共表达,例如在细胞分化期间发生的那些。在这里,我们通过分析20只小鼠组织的管家基因的mRNA和蛋白质表达变化来解决这个问题。我们发现大部分mRNA共表达确实是非功能性的,并且不会导致共表达蛋白质。基因的染色体邻近解释了这种非功能性mRNA共表达的比例。然而,小鼠组织的非功能性mRNA共表达的主要驱动器是表观遗传相似性。这两个因素都在一起对语言函数预测中的MRNA共表达数据占MRNA共表达数据的原因提供了解释。此外,这表明在基因组子组分中的进化过程中展开的内政部基因可能会保持其广泛的表达模式。

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