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TOPPER: Topology Prediction of Transmembrane Protein Based on Evidential Reasoning

The Scientific World JOURNALPublished 1 January 2013Open access
Xinyang Deng, Qi Liu, Yong Hu, Yong Deng
Citations20
SJR quartileQ2
SJR score0.65
SNIP1.24
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TL;DR

An evidential topology prediction method for transmembrane protein is proposed based on evidential reasoning which is superior to the individual prediction algorithms, which illustrates the effectiveness of the proposed method.

Abstract

The topology prediction of transmembrane protein is a hot research field in bioinformatics and molecular biology. It is a typical pattern recognition problem. Various prediction algorithms are developed to predict the transmembrane protein topology since the experimental techniques have been restricted by many stringent conditions. Usually, these individual prediction algorithms depend on various principles such as the hydrophobicity or charges of residues. In this paper, an evidential topology prediction method for transmembrane protein is proposed based on evidential reasoning, which is called TOPPER (topology prediction of transmembrane protein based on evidential reasoning). In the proposed method, the prediction results of multiple individual prediction algorithms can be transformed into BPAs (basic probability assignments) according to the confusion matrix. Then, the final prediction result can be obtained by the combination of each individual prediction base on Dempster's rule of combination. The experimental results show that the proposed method is superior to the individual prediction algorithms, which illustrates the effectiveness of the proposed method.

Keywords

Computer ScienceBiochemistry, Genetics and Molecular Biology