A novel dysregulated pathway-identification analysis based on global influence of within-pathway effects and crosstalk between pathways

Author:

Han Junwei1,Li Chunquan12,Yang Haixiu1,Xu Yanjun1,Zhang Chunlong1,Ma Jiquan1,Shi Xinrui1,Liu Wei13,Shang Desi1,Yao Qianlan1,Zhang Yunpeng1,Su Fei1,Feng Li1,Li Xia1

Affiliation:

1. College of Bioinformatics Science and Technology and Bio-pharmaceutical Key Laboratory of Heilongjiang Province, Harbin Medical University, Harbin 150081, People's Republic of China

2. School of Medical Informatics, Daqing Campus, Harbin Medical University, Harbin 150081, People's Republic of China

3. Department of Mathematics, Heilongjiang Institute of Technology, Harbin 150050, People's Republic of China

Abstract

Identifying dysregulated pathways from high-throughput experimental data in order to infer underlying biological insights is an important task. Current pathway-identification methods focus on single pathways in isolation; however, consideration of crosstalk between pathways could improve our understanding of alterations in biological states. We propose a novel method of pathway analysis based on global influence (PAGI) to identify dysregulated pathways, by considering both within-pathway effects and crosstalk between pathways. We constructed a global gene–gene network based on the relationships among genes extracted from a pathway database. We then evaluated the extent of differential expression for each gene, and mapped them to the global network. The random walk with restart algorithm was used to calculate the extent of genes affected by global influence. Finally, we used cumulative distribution functions to determine the significance values of the dysregulated pathways. We applied the PAGI method to five cancer microarray datasets, and compared our results with gene set enrichment analysis and five other methods. Based on these analyses, we demonstrated that PAGI can effectively identify dysregulated pathways associated with cancer, with strong reproducibility and robustness. We implemented PAGI using the freely available R-based and Web-based tools ( http://bioinfo.hrbmu.edu.cn/PAGI ).

Publisher

The Royal Society

Subject

Biomedical Engineering,Biochemistry,Biomaterials,Bioengineering,Biophysics,Biotechnology

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