Title of article :
Geometrical model for the native-state folds of proteins Original Research Article
Author/Authors :
Trinh X. Hoang، نويسنده , , Antonio Trovato، نويسنده , , Flavio Seno، نويسنده , , Jayanth R. Banavar، نويسنده , , Jayanth R. Banavar and Amos Maritan، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Pages :
6
From page :
289
To page :
294
Abstract :
We recently introduced a physical model [T.X. Hoang, A. Trovato, F. Seno, J.R. Banavar, A. Maritan, Geometry and symmetry pre-sculpt the free energy landscape of proteins. Proc. Natl. Acad. Sci. U. S. A. 101 (2004) 7960–7964, J.R. Banavar, T.X. Hoang, A. Maritan, F. Seno, A. Trovato, A unified perspective on proteins-a physics approach. Phys. Rev., E 70 (2004) 041905] for proteins which incorporates, in an approximate manner, several key features such as the inherent anisotropy of a chain molecule, the geometrical and energetic constraints placed by the hydrogen bonds and sterics, and the role played by hydrophobicity. Within this framework, marginally compact conformations resembling the native state folds of proteins emerge as broad competing minima in the free energy landscape even for a homopolymer. Here we show how the introduction of sequence heterogeneity using a simple scheme of just two types of amino acids, hydrophobic (H) and polar (P), and sequence design allows a selected putative native fold to become the free energy minimum at low temperature. The folding transition exhibits thermodynamic cooperativity, if one neglects the degeneracy between two different low energy conformations sharing the same fold topology.
Keywords :
protein folding , Energy landscape , protein design
Journal title :
Biophysical Chemistry
Serial Year :
2005
Journal title :
Biophysical Chemistry
Record number :
1113674
Link To Document :
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