Title :
Identifying Functional Modules Using MST-Based Weighted Gene Co-Expression Networks
Author :
Chanthaphan, Atthawut ; Prom-On, Santitham ; Meechai, Asawin ; Chan, Jonathan
Author_Institution :
Bioinf. Program, King Mongkut´´s Univ. of Technol. Thonburi, Bangkok, Thailand
Abstract :
This paper proposes an effective method for identifying functional modules of the weighted gene co-expression network using a minimum spanning tree (MST) approach coupled with network neighborhood connectivity. The MST-based gene co-expression network was reconstructed to serve as the backbone of gene co-expression network. Highly connected hub genes were identified based on the connectivity of the backbone network. All sub-networks were extracted by expanding from the hub genes to their neighborhood genes. Finally, functional modules were identified by integrating sub-networks with similar gene expression profiles. We tested the method with both simulated and autism spectrum disorder microarray data sets. The results show that our approach is better in highlighting the hub genes and can effectively identify functional modules with highly enriched pathways.
Keywords :
bioinformatics; cellular biophysics; genetics; molecular biophysics; autism spectrum disorder microarray; bioinformatics; functional modules; gene expression profiles; highly connected hub genes; minimum spanning tree; network neighborhood connectivity; weighted gene co-expression networks; Bioinformatics; Biomedical engineering; Biomedical measurements; Data mining; Diseases; Gene expression; Genetics; Genomics; Partitioning algorithms; Spine; functional module; hub genes; minimum spanning tree; scaled connectivity measures; weighted gene co-expression network;
Conference_Titel :
Bioinformatics and BioEngineering, 2009. BIBE '09. Ninth IEEE International Conference on
Conference_Location :
Taichung
Print_ISBN :
978-0-7695-3656-9
DOI :
10.1109/BIBE.2009.35