Intra‐ and intermolecular interactions between cyclic‐AMP receptor protein and DNA: Ab initio fragment molecular orbital study
- 4 April 2006
- journal article
- research article
- Published by Wiley in Journal of Computational Chemistry
- Vol. 27 (8) , 948-960
- https://doi.org/10.1002/jcc.20399
Abstract
The ab initio fragment molecular orbital (FMO) calculations were performed for the cAMP receptor protein (CRP) complexed with a cAMP and DNA duplex to elucidate their sequence‐specific binding and the stability of the DNA duplex, as determined by analysis of their inter‐ and intramolecular interactions. Calculations were performed with the AMBER94 force field and at the HF and MP2 levels with several basis sets. The interfragment interaction energies (IFIEs) were analyzed for interactions of CRP–cAMP with each base pair, DNA duplex with each amino acid residue, and each base pair with each residue. In addition, base–base interactions were analyzed including hydrogen bonding and stacking of DNA. In the interaction between DNA and CRP–cAMP, there was a significant charge transfer (CT) from the DNA to CRP, and this CT interaction played an important role as well as the electrostatic interactions. It is necessary to apply a quantum mechanical approach beyond the “classical” force‐field approach to describe the sequence specificity. In the DNA intramolecular interaction, the dispersion interactions dominated the stabilization of the base‐pair stacking interactions. Strong, attractive 1,2‐stacking interactions and weak, repulsive 1,3‐stacking interactions were observed. Comparison of the intramolecular interactions of free and complexed DNA revealed that the base‐pairing interactions were stronger, and the stacking interactions were weaker, in the complexed structure. Therefore, the DNA duplex stability appears to change due to both the electrostatic and the CT interactions that take place under conditions of DNA–CRP binding. © 2006 Wiley Periodicals, Inc. J Comput Chem 27: 948–960, 2006Keywords
This publication has 42 references indexed in Scilit:
- Ab initio fragment molecular orbital (FMO) method applied to analysis of the ligand–protein interaction in a pheromone-binding proteinComputational Biology and Chemistry, 2005
- VISCANA: Visualized Cluster Analysis of Protein−Ligand Interaction Based on the ab Initio Fragment Molecular Orbital Method for Virtual Ligand ScreeningJournal of Chemical Information and Modeling, 2005
- Stabilization Energies of the Hydrogen-Bonded and Stacked Structures of Nucleic Acid Base Pairs in the Crystal Geometries of CG, AT, and AC DNA Steps and in the NMR Geometry of the 5‘-d(GCGAAGC)-3‘ Hairpin: Complete Basis Set Calculations at the MP2 and CCSD(T) LevelsThe Journal of Physical Chemistry A, 2005
- Anatomy of specific interactions between ? repressor and operator DNAProteins-Structure Function and Bioinformatics, 2003
- Basis Set and Electron Correlation Effects on ab Initio Calculations of Cation-π/H-Bond Stair MotifsThe Journal of Physical Chemistry A, 2003
- 8-oxoguanine lesioned B-DNA molecule complexed with repair enzyme hOGG1: A molecular dynamics studyJournal of Computational Chemistry, 2003
- Fragment molecular orbital study of the binding energy of ligands to the estrogen receptorPure and Applied Chemistry, 2003
- Indirect readout of DNA sequence at the primary-kink site in the CAP-DNA complex: DNA binding specificity based on energetics of DNA kinkingJournal of Molecular Biology, 2001
- The Protein Data BankNucleic Acids Research, 2000
- Structure of the CAP-DNA Complex at 2.5 Å Resolution: A Complete Picture of the Protein-DNA InterfaceJournal of Molecular Biology, 1996