Literature DB >> 14871097

Thermodynamics of binding of 2-methoxy-3-isopropylpyrazine and 2-methoxy-3-isobutylpyrazine to the major urinary protein.

Richard J Bingham1, John B C Findlay, Shih-Yang Hsieh, Arnout P Kalverda, Alexandra Kjellberg, Chiara Perazzolo, Simon E V Phillips, Kothandaraman Seshadri, Chi H Trinh, W Bruce Turnbull, Geoffrey Bodenhausen, Steve W Homans.   

Abstract

In the present study we examine the thermodynamics of binding of two related pyrazine-derived ligands to the major urinary protein, MUP-I, using a combination of isothermal titration calorimetry (ITC), X-ray crystallography, and NMR backbone (15)N and methyl side-chain (2)H relaxation measurements. Global thermodynamics data derived from ITC indicate that binding is driven by favorable enthalpic contributions, rather than the classical entropy-driven hydrophobic effect. Unfavorable entropic contributions from the protein backbone and side-chain residues in the vicinity of the binding pocket are partially offset by favorable entropic contributions at adjacent positions, suggesting a "conformational relay" mechanism whereby increased rigidity of residues on ligand binding are accompanied by increased conformational freedom of side chains in adjacent positions. The principal driving force governing ligand affinity and specificity can be attributed to solvent-driven enthalpic effects from desolvation of the protein binding pocket.

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Year:  2004        PMID: 14871097     DOI: 10.1021/ja038461i

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  28 in total

1.  Long-timescale molecular-dynamics simulations of the major urinary protein provide atomistic interpretations of the unusual thermodynamics of ligand binding.

Authors:  Julie Roy; Charles A Laughton
Journal:  Biophys J       Date:  2010-07-07       Impact factor: 4.033

2.  Ligand binding to protein-binding pockets with wet and dry regions.

Authors:  Lingle Wang; B J Berne; R A Friesner
Journal:  Proc Natl Acad Sci U S A       Date:  2011-01-04       Impact factor: 11.205

3.  High resolution X-ray structures of mouse major urinary protein nasal isoform in complex with pheromones.

Authors:  Samantha Perez-Miller; Qin Zou; Milos V Novotny; Thomas D Hurley
Journal:  Protein Sci       Date:  2010-08       Impact factor: 6.725

4.  Protein-ligand interactions: thermodynamic effects associated with increasing nonpolar surface area.

Authors:  James M Myslinski; John E DeLorbe; John H Clements; Stephen F Martin
Journal:  J Am Chem Soc       Date:  2011-10-27       Impact factor: 15.419

5.  Effects of protein-pheromone complexation on correlated chemical shift modulations.

Authors:  Chiara Perazzolo; Julien Wist; Karine Loth; Luisa Poggi; Steve Homans; Geoffrey Bodenhausen
Journal:  J Biomol NMR       Date:  2005-12       Impact factor: 2.835

Review 6.  Functional aspects of protein flexibility.

Authors:  Kaare Teilum; Johan G Olsen; Birthe B Kragelund
Journal:  Cell Mol Life Sci       Date:  2009-03-24       Impact factor: 9.261

7.  Mechanism of the hydrophobic effect in the biomolecular recognition of arylsulfonamides by carbonic anhydrase.

Authors:  Phillip W Snyder; Jasmin Mecinovic; Demetri T Moustakas; Samuel W Thomas; Michael Harder; Eric T Mack; Matthew R Lockett; Annie Héroux; Woody Sherman; George M Whitesides
Journal:  Proc Natl Acad Sci U S A       Date:  2011-10-19       Impact factor: 11.205

8.  Comparison of entropic contributions to binding in a "hydrophilic" versus "hydrophobic" ligand-protein interaction.

Authors:  Neil R Syme; Caitriona Dennis; Agnieszka Bronowska; Guido C Paesen; Steve W Homans
Journal:  J Am Chem Soc       Date:  2010-06-30       Impact factor: 15.419

Review 9.  Isothermal microcalorimetry to investigate non specific interactions in biophysical chemistry.

Authors:  Vincent Ball; Clarisse Maechling
Journal:  Int J Mol Sci       Date:  2009-07-28       Impact factor: 6.208

10.  How Can Hydrophobic Association Be Enthalpy Driven?

Authors:  Piotr Setny; Riccardo Baron; J Andrew McCammon
Journal:  J Chem Theory Comput       Date:  2010-08-24       Impact factor: 6.006

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