4.4 Article

TargetATPsite: A template-free method for ATP-binding sites prediction with residue evolution image sparse representation and classifier ensemble

Journal

JOURNAL OF COMPUTATIONAL CHEMISTRY
Volume 34, Issue 11, Pages 974-985

Publisher

WILEY
DOI: 10.1002/jcc.23219

Keywords

protein functional annotation; proteinATP binding sites prediction; residue evolution image; sparse representation; classifier ensemble

Funding

  1. National Natural Science Foundation of China [91130033, 61175024, 61233011, 61222306, 61006091]
  2. Natural Science Foundation of Jiangsu [BK2011371]
  3. Jiangsu Postdoctoral Science Foundation [1201027C]
  4. Industry-Academia Cooperation Innovation Fund Projects of Jiangsu Province [BY2012022]
  5. Foundation for the Author of National Excellent Doctoral Dissertation of PR China [201048]
  6. Shanghai Science and Technology Commission [11JC1404800]

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Understanding the interactions between proteins and ligands is critical for protein function annotations and drug discovery. We report a new sequence-based template-free predictor (TargetATPsite) to identify the Adenosine-5-triphosphate (ATP) binding sites with machine-learning approaches. Two steps are implemented in TargetATPsite: binding residues and pockets predictions, respectively. To predict the binding residues, a novel image sparse representation technique is proposed to encode residue evolution information treated as the input features. An ensemble classifier constructed based on support vector machines (SVM) from multiple random under-samplings is used as the prediction model, which is effective for dealing with imbalance phenomenon between the positive and negative training samples. Compared with the existing ATP-specific sequence-based predictors, TargetATPsite is featured by the second step of possessing the capability of further identifying the binding pockets from the predicted binding residues through a spatial clustering algorithm. Experimental results on three benchmark datasets demonstrate the efficacy of TargetATPsite. (c) 2013 Wiley Periodicals, Inc.

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