Thermodynamic Basis for Promiscuity and Selectivity in Protein−Protein Interactions: PDZ Domains, a Case Study
- 9 September 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 128 (39) , 12766-12777
- https://doi.org/10.1021/ja060830y
Abstract
Like other protein−protein interaction domains, PDZ domains are involved in many key cellular processes. These processes often require that specific multiprotein complexes be assembled, a task that PDZ domains accomplish by binding to specific peptide motifs in target proteins. However, a growing number of experimental studies show that PDZ domains (like other protein−protein interaction domains) can engage in a variety of interactions and bind distinct peptide motifs. Such promiscuity in ligand recognition raises intriguing questions about the molecular and thermodynamic mechanisms that can sustain it. To identify possible sources of promiscuity and selectivity underlying PDZ domain interactions, we performed molecular dynamics simulations of 20 to 25 ns on a set of 12 different PDZ domain complexes (for the proteins PSD-95, Syntenin, Erbin, GRIP, NHERF, Inad, Dishevelled, and Shank). The electrostatic, nonpolar, and configurational entropy binding contributions were evaluated using the MM/PBSA method combined with a quasi-harmonic analysis. The results revealed that PDZ domain interactions are characterized by overwhelmingly favorable nonpolar contributions and almost negligible electrostatic components, a mix that may readily sustain promiscuity. In addition, despite the structural similarity in fold and in recognition modes, the entropic and other dynamical aspects of binding were remarkably variable not only across PDZ domains but also for the same PDZ domain bound to distinct ligands. This variability suggests that entropic and dynamical components can play a role in determining selectivity either of PDZ domain interactions with peptide ligands or of PDZ domain complexes with downstream effectors.Keywords
This publication has 93 references indexed in Scilit:
- Crystal Structure of the Shank PDZ-Ligand Complex Reveals a Class I PDZ Interaction and a Novel PDZ-PDZ DimerizationJournal of Biological Chemistry, 2003
- Molecular Roots of Degenerate Specificity in Syntenin's PDZ2 Domain: Reassessment of the PDZ Recognition ParadigmStructure, 2003
- Crystal Structure of GRIP1 PDZ6-Peptide Complex Reveals the Structural Basis for Class II PDZ Target Recognition and PDZ Domain-mediated MultimerizationPublished by Elsevier ,2003
- Novel Mode of Ligand Recognition by the Erbin PDZ DomainPublished by Elsevier ,2003
- PDZ7 of Glutamate Receptor Interacting Protein Binds to Its Target via a Novel Hydrophobic Surface AreaJournal of Biological Chemistry, 2002
- Crystal structure of the PDZ1 domain of human Na+/H+ exchanger regulatory factor provides insights into the mechanism of carboxyl-terminal leucine recognition by class I PDZ domainsJournal of Molecular Biology, 2001
- Structure and thermodynamics of RNA-protein binding: using molecular dynamics and free energy analyses to calculate the free energies of binding and conformational change11Edited by B. HonigJournal of Molecular Biology, 2000
- The Protein Data BankNucleic Acids Research, 2000
- CIPP, a Novel Multivalent PDZ Domain Protein, Selectively Interacts with Kir4.0 Family Members, NMDA Receptor Subunits, Neurexins, and NeuroliginsMolecular and Cellular Neuroscience, 1998
- VMD: Visual molecular dynamicsJournal of Molecular Graphics, 1996