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Interspecies protein-protein interaction network construction for characterization of host-pathogen interactions: A Candida albicans-zebrafish interaction study
Journal article   Open access   Peer reviewed

Interspecies protein-protein interaction network construction for characterization of host-pathogen interactions: A Candida albicans-zebrafish interaction study

Yu-Chao Wang, Che Lin, Ming-Ta Chuang, Wen-Ping Hsieh, Chung-Yu Lan, Yung-Jen Chuang and Bor-Sen Chen
BMC Systems Biology, Vol.7, 79
16/08/2013

Abstract

Computational systems biology Host-pathogen interaction Infection Multivariate dynamic modeling Network construction Protein-protein interaction network Redox
Background: Despite clinical research and development in the last decades, infectious diseases remain a top global problem in public health today, being responsible for millions of morbidities and mortalities each year. Therefore, many studies have sought to investigate host-pathogen interactions from various viewpoints in attempts to understand pathogenic and defensive mechanisms, which could help control pathogenic infections. However, most of these efforts have focused predominately on the host or the pathogen individually rather than on a simultaneous analysis of both interaction partners.Results: In this study, with the help of simultaneously quantified time-course Candida albicans-zebrafish interaction transcriptomics and other omics data, a computational framework was developed to construct the interspecies protein-protein interaction (PPI) network for C. albicans-zebrafish interactions based on the inference of ortholog-based PPIs and the dynamic modeling of regulatory responses. The identified C. albicans-zebrafish interspecies PPI network highlights the association between C. albicans pathogenesis and the zebrafish redox process, indicating that redox status is critical in the battle between the host and pathogen.Conclusions: Advancing from the single-species network construction method, the interspecies network construction approach allows further characterization and elucidation of the host-pathogen interactions. With continued accumulation of interspecies transcriptomics data, the proposed method could be used to explore progressive network rewiring over time, which could benefit the development of network medicine for infectious diseases. © 2013 Wang et al.; licensee BioMed Central Ltd.
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https://doi.org/10.1186/1752-0509-7-79View
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