运用生物信息学分析鉴定卵巢癌与糖尿病关系的关键候选基因和通路
Identification of Key Candidate Genes and Pathways for Relationship between Ovarian Cancer and Diabetes Mellitus Using Bioinformatical Analysis.
作者信息
Sun Yi, Xiaoyan Huang, Yun Liu, Chaoqun Liu, Jialing Wen, Liu Yang, Yingqi Zhao, Peipei Yi, Junjun Peng, Yuanming Lu
机构信息
Department of Toxicology, Guilin Medical University School of Public Health, Guilin, China. Email:
出版信息
Asian Pac J Cancer Prev. 2019 Jan 25;20(1):145-155. doi: 10.31557/APJCP.2019.20.1.145.
Ovarian cancer is one of the three major gynecologic cancers in the world. The aim of this study is to find the relationship between ovarian cancer and diabetes mellitus by using the genetic screening technique. By GEO database query and related online tools of analysis, we analyzed 185 cases of ovarian cancer and 10 control samples from GSE26712, and a total of 379 different genes were identified, including 104 up-regulated genes and 275 down-regulated genes. The up-regulated genes were mainly enriched in biological processes, including cell adhesion, transcription of nucleic acid and biosynthesis, and negative regulation of cell metabolism. The down-regulated genes were enriched in cell proliferation, migration, angiogenesis and macromolecular metabolism. Protein-protein interaction was analyzed by network diagram and module synthesis analysis. The top ten hub genes (CDC20, H2AFX, ENO1, ACTB, ISG15, KAT2B, HNRNPD, YWHAE, GJA1 and CAV1) were identified, which play important roles in critical signaling pathways that regulate the process of oxidation-reduction reaction and carboxylic acid metabolism. CTD analysis showed that the hub genes were involved in 1,128 distinct diseases (bonferroni-corrected P<0.05). Further analysis by drawing the Kaplan-Meier survival curve indicated that CDC20 and ISG15 were statistically significant (P<0.05). In conclusion, glycometabolism was related to ovarian cancer and genes and proteins in glycometabolism could serve as potential targets in ovarian cancer treatment.
卵巢癌是全球三大妇科癌症之一。本研究旨在通过基因筛查技术探寻卵巢癌与糖尿病之间的关系。通过GEO数据库查询及相关在线分析工具,我们分析了来自GSE26712的185例卵巢癌病例和10例对照样本,共鉴定出379个不同基因,其中包括104个上调基因和275个下调基因。上调基因主要富集于生物过程,包括细胞黏附、核酸转录与生物合成以及细胞代谢的负调控。下调基因则富集于细胞增殖、迁移、血管生成和大分子代谢。通过网络图和模块合成分析对蛋白质-蛋白质相互作用进行了分析。鉴定出了前十大枢纽基因(CDC20、H2AFX、ENO1、ACTB、ISG15、KAT2B、HNRNPD、YWHAE、GJA1和CAV1),它们在调节氧化还原反应和羧酸代谢过程的关键信号通路中发挥重要作用。CTD分析表明,这些枢纽基因涉及1128种不同疾病(经邦费罗尼校正,P<0.05)。通过绘制Kaplan-Meier生存曲线进一步分析表明,CDC20和ISG15具有统计学意义(P<0.05)。总之,糖代谢与卵巢癌相关,糖代谢中的基因和蛋白质可作为卵巢癌治疗的潜在靶点。