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基于转录组数据的网络分析挖掘鼻咽癌与口腔鳞癌的共享功能模块 被引量:7
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作者 陈应坚 廖苑君 +4 位作者 林帆 孙胜南 赵小蕾 覃继恒 饶绍奇 《遗传》 CAS CSCD 北大核心 2019年第2期146-157,共12页
鼻咽癌和口腔鳞癌是两种在临床上高度相关的疾病,从分子层面系统性研究这两种疾病的相互关系却鲜见报道。本研究通过大规模的转录组数据分析识别鼻咽癌和口腔鳞癌的共享功能模块及其核心基因(一因多效模块和基因),以期阐明这两种疾病共... 鼻咽癌和口腔鳞癌是两种在临床上高度相关的疾病,从分子层面系统性研究这两种疾病的相互关系却鲜见报道。本研究通过大规模的转录组数据分析识别鼻咽癌和口腔鳞癌的共享功能模块及其核心基因(一因多效模块和基因),以期阐明这两种疾病共享的分子机制。从GEO数据库获取这两种癌症的两套转录组数据,应用倍数法和经验贝叶斯方法筛选出鼻咽癌差异表达基因1279个,口腔鳞癌差异表达基因1293个,其中两者共享基因278个。以共享基因为种子,通过蛋白质-蛋白质互作知识引导构建基因网络,其中最大子网包含1290个基因和1766互作对。应用Newman算法提取了15个共享功能模块。对这些模块进行拓扑学分析,挖掘出58个核心基因,包括已知的与鼻咽癌或口腔鳞癌相关的基因(如PCNA、CDK1、STAT1、CCL5和MMP1等)和鲜有报道的基因(如MELK、NME1、RACGAP1、INHBA和NID1等)。通路富集分析发现鼻咽癌和口腔鳞癌的共享功能模块参与多个生物学通路,包括p53信号通路、ECM受体相互作用、黏着斑、细胞周期等。本研究表明鼻咽癌和口腔鳞癌具有相似的致癌机制,所挖掘的共享模块可能是这两种疾病演化的核心分子相互作用机制。 展开更多
关键词 鼻咽癌 口腔鳞癌 基因芯片 网络分析 基因多效性
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Identification of Risk Pathways and Functional Modules for Coronary Artery Disease Based on Genome-wide SNP Data 被引量:3
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作者 Xiang Zhao Yi-Zhao Luan +8 位作者 Xiaoyu Zuo Ye-Da Chen jiheng qin Lv Jin Yiqing Tan Meihua Lin Naizun Zhang Yan Liang Shao-Qi Rao 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2016年第6期349-356,共8页
Coronary artery disease (CAD) is a complex human disease, involving multiple genes and their nonlinear interactions, which often act in a modular fashion. Genome-wide single nucleotide polymorphism (SNP) profiling... Coronary artery disease (CAD) is a complex human disease, involving multiple genes and their nonlinear interactions, which often act in a modular fashion. Genome-wide single nucleotide polymorphism (SNP) profiling provides an effective technique to unravel these underlying genetic interplays or their functional involvements for CAD. This study aimed to identify the susceptible pathways and modules for CAD based on SNP omics. First, the Wellcome Trust Case Control Consortium (WTCCC) SNP datasets of CAD and control samples were used to assess the joint effect of multiple genetic variants at the pathway level, using logistic kernel machine regression model. Then, an expanded genetic network was constructed by integrating statistical gene-gene interactions involved in these susceptible pathways with their protein protein interaction (PPI) knowledge. Finally, risk functional modules were identified by decomposition of the network. Of 276 KEGG pathways analyzed, 6 pathways were found to have a significant effect on CAD. Other than glycerolipid metabolism, glycosaminoglycan biosynthesis, and cardiac muscle contraction pathways, three pathways related to other diseases were also revealed, including Alzheimer's disease, non-alcoholic fatty liver disease, and Huntington's disease. A genetic epistatic network of 95 genes was further constructed using the abovementioned integrative approach. Of 10 functional modules derived from the network, 6 have been annotated to phospholipase C activity and cell adhesion molecule binding, which also have known functional involvement in Alzheimer's disease. These findings indicate an overlap of the underlying molecular mechanisms between CAD and Alzheimer's disease, thus providing new insights into the molecular basis for CAD and its molecular relationships with other diseases. 展开更多
关键词 Coronary artery disease Genome-wide SNP profiling Risk pathway Functional module Genetic network
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Pathway-based Analysis of the Hidden Genetic Heterogeneities in Cancers
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作者 Xiaolei Zhao Shouqiang Zhong +6 位作者 Xiaoyu Zuo Meihua Lin jiheng qin Yizhao Luan Naizun Zhang Yan Liang Shaoqi Rao 《Genomics, Proteomics & Bioinformatics》 SCIE CAS CSCD 2014年第1期31-38,共8页
Many cancers apparently showing similar phenotypes are actually distinct at the molecular level,leading to very different responses to the same treatment.It has been recently demonstrated that pathway-based approaches... Many cancers apparently showing similar phenotypes are actually distinct at the molecular level,leading to very different responses to the same treatment.It has been recently demonstrated that pathway-based approaches are robust and reliable for genetic analysis of cancers.Nevertheless,it remains unclear whether such function-based approaches are useful in deciphering molecular heterogeneities in cancers.Therefore,we aimed to test this possibility in the present study.First,we used a NCI60 dataset to validate the ability of pathways to correctly partition samples.Next,we applied the proposed method to identify the hidden subtypes in diffuse large B-cell lymphoma (DLBCL).Finally,the clinical significance of the identified subtypes was verified using survival analysis.For the NCI60 dataset,we achieved highly accurate partitions that best fit the clinical cancer phenotypes.Subsequently,for a DLBCL dataset,we identified three hidden subtypes that showed very different 10-year overall survival rates (90%,46% and 20%) and were highly significantly (P =0.008) correlated with the clinical survival rate.This study demonstrated that the pathwaybased approach is promising for unveiling genetic heterogeneities in complex human diseases. 展开更多
关键词 Genetic heterogeneity Pathway-based approach Sample partitioning Enrichment analysis Survival analysis Cancer
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