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Excavation of attractor modules for nasopharyngeal carcinoma via integrating systemic module inference with attract method

机译:系统模块推断与吸引方法相结合的鼻咽癌吸引模块的开挖

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摘要

The molecular mechanism of nasopharyngeal carcinoma (NPC) is poorly understood and effective therapeutic approaches are needed. This research aimed to excavate the attractor modules involved in the progression of NPC and provide further understanding of the underlying mechanism of NPC. Based on the gene expression data of NPC, two specific protein-protein interaction networks for NPC and control conditions were re-weighted using Pearson correlation coefficient. Then, a systematic tracking of candidate modules was conducted on the re-weighted networks via cliques algorithm, and a total of 19 and 38 modules were separately identified from NPC and control networks, respectively. Among them, 8 pairs of modules with similar gene composition were selected, and 2 attractor modules were identified via the attract method. Functional analysis indicated that these two attractor modules participate in one common bioprocess of cell division. Based on the strategy of integrating systemic module inference with the attract method, we successfully identified 2 attractor modules. These attractor modules might play important roles in the molecular pathogenesis of NPC via affecting the bioprocess of cell division in a conjunct way. Further research is needed to explore the correlations between cell division and NPC.
机译:鼻咽癌(NPC)的分子机制了解甚少,需要有效的治疗方法。这项研究旨在挖掘参与NPC进程的吸引子模块,并进一步了解NPC的潜在机制。根据NPC的基因表达数据,使用Pearson相关系数对两个特定的NPC蛋白质-蛋白质相互作用网络和对照条件进行加权。然后,通过重群算法在重加权网络上对候选模块进行了系统的跟踪,分别从NPC和控制网络中分别识别出19个模块和38个模块。其中,选择了8对具有相似基因组成的模块,并通过吸引方法鉴定了2个吸引子模块。功能分析表明,这两个吸引子模块参与细胞分裂的一种常见生物过程。基于将系统模块推断与吸引方法相结合的策略,我们成功地确定了2个吸引器模块。这些吸引子模块可能通过共同影响细胞分裂的生物过程,在NPC的分子发病机制中发挥重要作用。需要进一步研究以探索细胞分裂与NPC之间的相关性。

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