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A three‐tiered integrative analysis of transcriptional data reveals the shared pathways related to heart failure from different aetiologies

机译:对转录数据的三分层综合分析显示了与来自不同疾病的心力衰竭有关的共同途径

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摘要

Heart failure (HF) is the end stage of most heart disease cases and can be initiated from multiple aetiologies. However, whether the molecular basis of HF has a commonality between different aetiologies has not been elucidated. To address this lack, we performed a three‐tiered analysis by integrating transcriptional data and pathway information to explore the commonalities of HF from different aetiologies. First, through differential expression analysis, we obtained 111 genes that were frequently differentially expressed in HF from 11 different aetiologies. Several genes, such as and , are early and accurate biomarkers for HF. We also provided candidates for further experimental verification, such as and . Then, using gene set enrichment analysis, we successfully identified 19 frequently dysregulated pathways. In particular, we found that pathways related to immune system signalling, the extracellular matrix and metabolism were critical in the development of HF. Finally, we successfully acquired 241 regulatory relationships between 64 transcriptional factors (TFs) and 17 frequently dysregulated pathways by integrating a regulatory network, and some of the identified TFs have already been proven to play important roles in HF. Taken together, the three‐tiered analysis of HF provided a systems biology perspective on HF and emphasized the molecular commonality of HF from different aetiologies.
机译:心力衰竭(HF)是大多数心脏病病例的末期,可以从多种疾病开始。然而,HF的分子基础是否尚未阐明不同疾病之间的共性。为了解决这种缺乏,我们通过整合转录数据和通路信息来进行三层分析,以探索来自不同疾病的HF的共性。首先,通过差异表达分析,我们获得111个基因,该基因经常在11种不同的氧化术中以HF差异表达。几种基因,例如和,是早期和准确的HF生物标志物。我们还为进一步的实验验证提供了候选人,例如和。然后,使用基因设定浓缩分析,我们成功地确定了19个经常失调的途径。特别是,我们发现与免疫系统信号传导相关的途径,细胞外基质和代谢在HF的发育中至关重要。最后,我们通过整合监管网络成功获得了64个转录因子(TFS)和17个经常失调的途径之间的241个监管关系,并且已经证明了一些已识别的TFS在HF中发挥重要作用。在一起,HF的三层分析为HF提供了系统生物学透视,并强调了来自不同疾病的HF的分子共性。

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