Title :
An improved statistics-based backbone torsion potential energy for protein loop structure modeling
Author :
Rata, Ionel ; Wessells, Kyle ; Yaohang Li
Author_Institution :
Nat. Inst. for Phys. & Nucl. Eng. (IFIN-HH), Bucharest-Magurele, Romania
Abstract :
Accurately modeling protein loops is critical to predicting three-dimensional structures and understanding functions of many proteins. Local interactions between neighboring residue configurations contribute significantly to forming loop conformations. In this paper, we improve our statistical potential energy function (J. Phys. Chem. B 114(5): 1859-1869, 2010) for loop backbone torsion angle conformations by taking influences from the second nearest neighbor effect (SNNE) into consideration. This is based on our study showing that the second nearest neighbors along a protein sequence still have non-negligible influences on the torsion angles conformation of a loop residue while such correlations from further neighbors are much weakened. A biologically meaningful reference state is also introduced. Accuracy and sensitivity enhancements of the new loop torsion potential energy are observed on a decoy set with 4- to 12-residue loop targets.
Keywords :
molecular biophysics; molecular configurations; proteins; 3D structures; biologically meaningful reference state; improved statistics based backbone torsion potential energy; protein loop structure modeling; protein sequence; residue configurations; second nearest neighbor effect; torsion angles conformation; Accuracy; Amino acids; Correlation; Potential energy; Probability density function; Proteins; Backbone Torsion Potential; FM index; Local Interactions; Protein Loop Structure; next-generation sequencing; randomization; read alignment;
Conference_Titel :
Computational Advances in Bio and Medical Sciences (ICCABS), 2013 IEEE 3rd International Conference on
Conference_Location :
New Orleans, LA
DOI :
10.1109/ICCABS.2013.6629195