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A Probabilistic Graph-Theoretic Approach to Integrate Multiple Predictions for the Protein-Protein Subnetwork Prediction Challenge
Journal article   Peer reviewed

A Probabilistic Graph-Theoretic Approach to Integrate Multiple Predictions for the Protein-Protein Subnetwork Prediction Challenge

Hon Nian Chua, Willy Hugo, Guimei Liu, Xiaoli Li, Limsoon Wong and See-Kiong Ng
CHALLENGES OF SYSTEMS BIOLOGY: COMMUNITY EFFORTS TO HARNESS BIOLOGICAL COMPLEXITY, Vol.1158(1), pp.224-233
Annals of the New York Academy of Sciences-Series
03/2009
PMID: 19348644

Abstract

Biotechnology & Applied Microbiology Life Sciences & Biomedicine Mathematical & Computational Biology Multidisciplinary Sciences Science & Technology Science & Technology - Other Topics
The protein-protein subnetwork prediction challenge presented at the 2nd Dialogue for Reverse Engineering Assessments and Methods (DREAM2) conference is an important computational problem essential to proteomic research. Given a set of proteins from the Saccharomyces cerevisiae (baker's yeast) genome, the task is to rank all possible interactions between the proteins from the most likely to the least likely. To tackle this task, we adopt a graph-based strategy to combine multiple sources of biological data and computational predictions. Using training and testing sets extracted from existing yeast protein-protein interactions, we evaluate our method and show that it can produce better predictions than any of the individual data sources. This technique is then used to produce our entry for the protein-protein subnetwork prediction challenge.

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