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Gene Co-Expression Networks Restructured Gene Fusion in Rhabdomyosarcoma Cancers

机译:基因共表达网络重组基因融合在横纹肌肉瘤中的作用。

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摘要

Rhabdomyosarcoma is subclassified by the presence or absence of a recurrent chromosome translocation that fuses the FOXO1 and PAX3 or PAX7 genes. The fusion protein (FOXO1-PAX3/7) retains both binding domains and becomes a novel and potent transcriptional regulator in rhabdomyosarcoma subtypes. Many studies have characterized and integrated genomic, transcriptomic, and epigenomic differences among rhabdomyosarcoma subtypes that contain the FOXO1-PAX3/7 gene fusion and those that do not; however, few investigations have investigated how gene co-expression networks are altered by FOXO1-PAX3/7. Although transcriptional data offer insight into one level of functional regulation, gene co-expression networks have the potential to identify biological interactions and pathways that underpin oncogenesis and tumorigenicity. Thus, we examined gene co-expression networks for rhabdomyosarcoma that were FOXO1-PAX3 positive, FOXO1-PAX7 positive, or fusion negative. Gene co-expression networks were mined using local maximum Quasi-Clique Merger (lmQCM) and analyzed for co-expression differences among rhabdomyosarcoma subtypes. This analysis observed 41 co-expression modules that were shared between fusion negative and positive samples, of which 17/41 showed significant up- or down-regulation in respect to fusion status. Fusion positive and negative rhabdomyosarcoma showed differing modularity of co-expression networks with fusion negative (n = 109) having significantly more individual modules than fusion positive (n = 53). Subsequent analysis of gene co-expression networks for PAX3 and PAX7 type fusions observed 17/53 were differentially expressed between the two subtypes. Gene list enrichment analysis found that gene ontology terms were poorly matched with biological processes and molecular function for most co-expression modules identified in this study; however, co-expressed modules were frequently localized to cytobands on chromosomes 8 and 11. Overall, we observed substantial restructuring of co-expression networks relative to fusion status and fusion type in rhabdomyosarcoma and identified previously overlooked genes and pathways that may be targeted in this pernicious disease.
机译:横纹肌肉瘤可归类为是否存在融合FOXO1和PAX3或PAX7基因的复发性染色体易位。融合蛋白(FOXO1-PAX3 / 7)保留了两个结合域,并成为横纹肌肉瘤亚型中一种新颖而有效的转录调节因子。许多研究已经表征并整合了包含FOXO1-PAX3 / 7基因融合的横纹肌肉瘤亚型与不融合的横纹肌肉瘤亚型之间的基因组,转录组和表观基因组差异。然而,很少有研究调查FOXO1-PAX3 / 7如何改变基因共表达网络。尽管转录数据提供了对功能调节的一个层次的了解,但是基因共表达网络仍具有识别支持肿瘤发生和致瘤性的生物学相互作用和途径的潜力。因此,我们检查了横纹肌肉瘤的基因共表达网络,它们是FOXO1-PAX3阳性,FOXO1-PAX7阳性或融合阴性。基因共表达网络使用局部最大拟群合并(lmQCM)进行挖掘,并分析横纹肌肉瘤亚型之间的共表达差异。该分析观察到融合阴性和阳性样品之间共有的41个共表达模块,其中17/41在融合状态方面显示出明显的上调或下调。融合阳性和阴性横纹肌肉瘤表现出不同的共表达网络模块化,其中融合阴性(n = 109)的个体模块明显多于融合阳性(n = 53)。随后观察到的PAX3和PAX7型融合基因共表达网络的分析17/53在两种亚型之间差异表达。基因列表富集分析发现,对于本研究中鉴定的大多数共表达模块,基因本体术语与生物学过程和分子功能均不匹配。但是,共表达的模块经常位于染色体8和11的细胞带上。总的来说,我们观察到横纹肌肉瘤中共表达网络相对于融合状态和融合类型的实质性重组,并确定了以前可能被忽略的基因和途径。恶性疾病。

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