Different packing of external residues can explain differences in the thermostability of proteins from thermophilic and mesophilic organisms
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Michail Yu. Lobanov | Sergiy O. Garbuzynskiy | Oxana V. Galzitskaya | M. Y. Lobanov | Anna V. Glyakina | O. Galzitskaya | S. O. Garbuzynskiy | A. Glyakina
[1] Igor N. Berezovsky,et al. Protein and DNA Sequence Determinants of Thermophilic Adaptation , 2006, PLoS Comput. Biol..
[2] Ming-Tat Ko,et al. Amino acid coupling patterns in thermophilic proteins , 2005, Proteins.
[3] Eugene I Shakhnovich,et al. Physics and evolution of thermophilic adaptation. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[4] A V Finkelstein,et al. Computation of biopolymers: a general approach to different problems. , 1993, Bio Systems.
[5] K. Dill. Dominant forces in protein folding. , 1990, Biochemistry.
[6] Alfred V. Aho,et al. The Design and Analysis of Computer Algorithms , 1974 .
[7] Hans Robert Kalbitzer,et al. Role of entropy in protein thermostability: folding kinetics of a hyperthermophilic cold shock protein at high temperatures using 19F NMR. , 2002, Biochemistry.
[8] B. Honig. Protein folding: from the levinthal paradox to structure prediction. , 1999, Journal of molecular biology.
[9] J. M. Scholtz,et al. Lessons in stability from thermophilic proteins , 2006, Protein science : a publication of the Protein Society.
[10] R. Nussinov,et al. Factors enhancing protein thermostability. , 2000, Protein engineering.
[11] D. A. Dougherty,et al. Cation-π interactions in structural biology , 1999 .
[12] R Nussinov,et al. Thermodynamic differences among homologous thermophilic and mesophilic proteins. , 2001, Biochemistry.
[13] Adam Godzik,et al. Contribution of electrostatic interactions, compactness and quaternary structure to protein thermostability: lessons from structural genomics of Thermotoga maritima. , 2006, Journal of molecular biology.
[14] Young Je Yoo,et al. Packing-based difference of structural features between thermophilic and mesophilic proteins. , 2005, International journal of biological macromolecules.
[15] K. Nishikawa,et al. Protein surface amino acid compositions distinctively differ between thermophilic and mesophilic bacteria. , 2001, Journal of molecular biology.
[16] D. A. Dougherty,et al. Cation-pi interactions in structural biology. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[17] P. Privalov. Stability of proteins: small globular proteins. , 1979, Advances in protein chemistry.
[18] E. Myers,et al. Basic local alignment search tool. , 1990, Journal of molecular biology.
[19] J. Thornton,et al. Ion-pairs in proteins. , 1983, Journal of molecular biology.
[20] W. Kabsch,et al. Dictionary of protein secondary structure: Pattern recognition of hydrogen‐bonded and geometrical features , 1983, Biopolymers.
[21] A. Finkelstein,et al. A theoretical search for folding/unfolding nuclei in three-dimensional protein structures. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[22] T. N. Bhat,et al. The Protein Data Bank , 2000, Nucleic Acids Res..
[23] A. Finkelstein,et al. Outlining folding nuclei in globular proteins. , 2004, Journal of molecular biology.
[24] O. V. Galzitskaya,et al. On the Prediction of Folding Nuclei in Globular Proteins , 2005, Molecular Biology.
[25] A. Szilágyi,et al. Structural differences between mesophilic, moderately thermophilic and extremely thermophilic protein subunits: results of a comprehensive survey. , 2000, Structure.
[26] Sebastian Hansson,et al. Folding of S6 structures with divergent amino acid composition: pathway flexibility within partly overlapping foldons. , 2006, Journal of molecular biology.
[27] Sergiy O. Garbuzynskiy,et al. Theoretical study of protein folding: outlining folding nuclei and estimation of protein folding rates , 2005 .
[28] A. Fersht,et al. Mapping the transition state and pathway of protein folding by protein engineering , 1989, Nature.
[29] R. Varadarajan,et al. Elucidation of factors responsible for enhanced thermal stability of proteins: a structural genomics based study. , 2002, Biochemistry.
[30] Igor N. Berezovsky,et al. Entropic Stabilization of Proteins and Its Proteomic Consequences , 2005, PLoS Comput. Biol..
[31] A V Finkelstein,et al. Rate of protein folding near the point of thermodynamic equilibrium between the coil and the most stable chain fold. , 1997, Folding & design.
[32] Mohamed A. Marahiel,et al. Conservation of rapid two-state folding in mesophilic, thermophilic and hyperthermophilic cold shock proteins , 1998, Nature Structural Biology.
[33] H Nojima,et al. Reversible thermal unfolding of thermostable phosphoglycerate kinase. Thermostability associated with mean zero enthalpy change. , 1977, Journal of molecular biology.
[34] Arne Elofsson,et al. MaxSub: an automated measure for the assessment of protein structure prediction quality , 2000, Bioinform..