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Identification of Key Genes and Pathways in Cervical Cancer by Bioinformatics Analysis

机译:生物信息学分析鉴定宫颈癌关键基因和途径

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Cervical cancer is a common malignant tumour of the female reproductive system that seriously threatens the health of women. The aims of this study were to identify key genes and pathways and to illuminate new molecular mechanisms underlying cervical cancer. Altogether, 1829 DEGs were identified, including 794 significantly down-regulated DEGs and 1035 significantly up-regulated DEGs. GO analysis suggested that the up-regulated DEGs were mainly enriched in mitotic cell cycle processes, including DNA replication, organelle fission, chromosome segregation and cell cycle phase transition, and that the down-regulated DEGs were primarily enriched in development and differentiation processes, such as tissue development, epidermis development, skin development, keratinocyte differentiation, epidermal cell differentiation and epithelial cell differentiation. KEGG pathway analysis showed that the DEGs were significantly enriched in cell cycle, DNA replication, the p53 signalling pathway, pathways in cancer and oocyte meiosis. The top 9 hub genes with a high degree of connectivity (over 72 in the PPI network) were down-regulated TSPO, CCND1, and FOS and up-regulated CDK1, TOP2A, CCNB1, PCNA, BIRC5 and MAD2L1. Module analysis indicated that the top 3 modules were significantly enriched in mitotic cell cycle, DNA replication and regulation of cell cycle (P 0.01). The heat map based on TCGA database preliminarily demonstrated the expression change of the key genes in cervical cancer. GSEA results were basically coincident with the front enrichment analysis results. By comprehensive analysis, we confirmed that cell cycle was a key biological process and a critical driver in cervical cancer. In conclusion, this study identified DEGs and screened the key genes and pathways closely related to cervical cancer by bioinformatics analysis, simultaneously deepening our understanding of the molecular mechanisms underlying the occurrence and progression of cervical cancer. These results might hold promise for finding potential therapeutic targets of cervical cancer.
机译:宫颈癌是女性生殖系统的常见恶性肿瘤,严重威胁着妇女的健康。本研究的目的是鉴定关键基因和途径,并照亮宫颈癌下面的新分子机制。完全,鉴定了1829次DEG,其中包括794个明显下调的次数和1035个显着上调的次数。 GO分析表明,上调的DEG主要富集在有丝分裂细胞周期过程中,包括DNA复制,细胞器裂变,染色体隔离和细胞周期阶段转换,并且下调的次数主要富含开发和分化过程,如作为组织发育,表皮发育,皮肤发育,角质形成细胞分化,表皮细胞分化和上皮细胞分化。 Kegg途径分析表明,在细胞周期,DNA复制,P53信号通路,癌症和卵母细胞减数分裂中的途径中显着富集。具有高连接程度的前9个轮毂基因(PPI网络中超过72)是下调的TSPO,CCND1和FOS和上调CDK1,TOP2A,CCNB1,PCNA,BIRC5和MAD2L1。模块分析表明,前3个模块在有丝分裂细胞周期中显着富集,DNA复制和细胞周期调节(P <0.01)。基于TCGA数据库的热图预先证明了宫颈癌中关键基因的表达变化。 GSEA结果基本上与前富集分析结果一致。通过综合分析,我们证实细胞周期是宫颈癌中的关键生物过程和关键驾驶员。总之,本研究通过生物信息化分析确定了与宫颈癌密切相关的关键基因和途径,同时深化了我们对宫颈癌发生和进展的分子机制的理解。这些结果可能存在承担发现宫颈癌的潜在治疗目标。

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