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Systems biology approach to the dissection of the complexity of regulatory networks in the S. scrofa cardiocirculatory system.

机译:系统生物学方法剖析了S.scrofa心血管系统中调节网络的复杂性。

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摘要

Genome-wide experiments are routinely used to increase the understanding of the biological processes involved in the development and maintenance of a variety of pathologies. Although the technical feasibility of this type of experiment has improved in recent years, data analysis remains challenging. In this context, gene set analysis has emerged as a fundamental tool for the interpretation of the results. Here, we review strategies used in the gene set approach, and using datasets for the pig cardiocirculatory system as a case study, we demonstrate how the use of a combination of these strategies can enhance the interpretation of results. Gene set analyses are able to distinguish vessels from the heart and arteries from veins in a manner that is consistent with the different cellular composition of smooth muscle cells. By integrating microRNA elements in the regulatory circuits identified, we find that vessel specificity is maintained through specific miRNAs, such as miR-133a and miR-143, which show anti-correlated expression with their mRNA targets.
机译:通常使用全基因组实验来增进对各种病理学发展和维持中涉及的生物学过程的了解。尽管近年来这类实验的技术可行性有所提高,但数据分析仍然具有挑战性。在这种情况下,基因组分析已成为解释结果的基本工具。在这里,我们回顾了基因集方法中使用的策略,并以猪心脏循环系统的数据集为案例研究,展示了如何结合使用这些策略来增强结果的解释。基因组分析能够以与平滑肌细胞不同细胞组成一致的方式区分血管和心脏,以及血管。通过将微RNA元件整合到已确定的调控电路中,我们发现可以通过特定的miRNA(例如miR-133a和miR-143)保持血管特异性,它们显示出与其mRNA靶标的抗相关表达。

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