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A NEW APPROACH TO HOMOLOGY MODELING

Abstract

The need to interpret experimental results led to, first, an all-atom force field, followed by a coarse-grained one. As an aid to these force fields, a new approach is introduced here to predict protein structure based on the physical properties of the amino acids. This approach includes three key components: Kidera factors describing the physical properties, Fourier transformation and UNRES coarse grained force field simulations. Different from traditional homology modeling methods which are based on evolution, this approach is physics-based, and does not have the same weaknesses as the traditional homology modeling methods. Our results show that this approach can produce above average prediction results, and can be used as a useful tool for protein structure prediction.

Keywords:

protein structure prediction, physical properties, Kidera factors, Fourier transformation, coarse-grained force field

Details

Issue
Vol. 18 No. 3 (2014)
Section
Research article
Published
2014-09-30
DOI:
https://doi.org/10.17466/TQ2014/18.3/A
Licencja:
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 International License.

Author Biographies

YI HE,
Cornell University, Baker Laboratory of Chemistry and Chemical Biology



H. A. SCHERAGA,
Cornell University, Baker Laboratory of Chemistry and Chemical Biology



S. RACKOVSKY,
Cornell University, Baker Laboratory of Chemistry and Chemical Biology; Icahn School of Medicine at Mount Sinai, Department of Pharmacology and Systems Therapeutics




Authors

  • YI HE

    Cornell University, Baker Laboratory of Chemistry and Chemical Biology
  • H. A. SCHERAGA

    Cornell University, Baker Laboratory of Chemistry and Chemical Biology
  • S. RACKOVSKY

    Cornell University, Baker Laboratory of Chemistry and Chemical Biology; Icahn School of Medicine at Mount Sinai, Department of Pharmacology and Systems Therapeutics

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