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A computational pipeline for deciphering the molecular mechanisms of oral cancer progression

机译:解释口腔癌进展的分子机制的计算管道

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In this work we present a computational pipeline in order to further study the molecular mechanisms underlying the progression of Oral Squamous Cell Carcinoma. Microarray gene expression data of oral cancer patients are exploited aiming to identify the differentially expressed genes between relapse and non-relapse samples. Furthermore, gene ontology analysis of the significant genes is performed and the associated functional groups are annotated. Thus, we are able to interpret the differential expression results in terms of biological processes, molecular functions and cellular components. In addition, pathway enrichment analysis is also considered based on a curated database of molecular pathways. According to our analysis results, genes that exhibit remarkable changes in expression, such as the YES1 oncogene has been predicted to interact closely with genes implicated in oral cancer. Concerning the pathway enrichment analysis, Ribosome and Tyrosine metabolism pathways are identified and should be considered for further analysis.
机译:在这项工作中,我们提出了一条计算流程,以便进一步研究口腔鳞状细胞癌进展的分子机制。利用口腔癌患者的微阵列基因表达数据旨在鉴定复发和非复发样品之间的差异表达基因。此外,对重要基因进行了基因本体分析,并注释了相关的官能团。因此,我们能够根据生物学过程,分子功能和细胞成分来解释差异表达结果。另外,还基于分子途径的精选数据库来考虑途径富集分析。根据我们的分析结果,已预测表现出显着变化的基因(例如YES1癌基因)将与口腔癌相关基因密切相互作用。关于途径富集分析,已鉴定核糖体和酪氨酸代谢途径,应考虑作进一步分析。

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