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Molecular dynamics simulations and free energy calculations of netropsin and distamycin binding to an AAAAA DNA binding site

Molecular dynamics simulations have been performed on netropsin in two different charge states and on distamycin binding to the minor groove of the DNA duplex d(CGCGAAAAACGCG)·d(CGCGTTTTTCGCG). The relative free energy of binding of the two non-covalently interacting ligands was calculated using the...

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Detalles Bibliográficos
Autores principales: Dolenc, Jožica, Oostenbrink, Chris, Koller, Jože, van Gunsteren, Wilfred F.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC548343/
https://www.ncbi.nlm.nih.gov/pubmed/15687382
http://dx.doi.org/10.1093/nar/gki195
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author Dolenc, Jožica
Oostenbrink, Chris
Koller, Jože
van Gunsteren, Wilfred F.
author_facet Dolenc, Jožica
Oostenbrink, Chris
Koller, Jože
van Gunsteren, Wilfred F.
author_sort Dolenc, Jožica
collection PubMed
description Molecular dynamics simulations have been performed on netropsin in two different charge states and on distamycin binding to the minor groove of the DNA duplex d(CGCGAAAAACGCG)·d(CGCGTTTTTCGCG). The relative free energy of binding of the two non-covalently interacting ligands was calculated using the thermodynamic integration method and reflects the experimental result. From 2 ns simulations of the ligands free in solution and when bound to DNA, the mobility and the hydrogen-bonding patterns of the ligands were studied, as well as their hydration. It is shown that even though distamycin is less hydrated than netropsin, the loss of ligand–solvent interactions is very similar for both ligands. The relative mobilities of the ligands in their bound and free forms indicate a larger entropic penalty for distamycin when binding to the minor groove compared with netropsin, partially explaining the lower binding affinity of the distamycin molecule. The detailed structural and energetic insights obtained from the molecular dynamics simulations allow for a better understanding of the factors determining ligand–DNA binding.
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spelling pubmed-5483432005-02-10 Molecular dynamics simulations and free energy calculations of netropsin and distamycin binding to an AAAAA DNA binding site Dolenc, Jožica Oostenbrink, Chris Koller, Jože van Gunsteren, Wilfred F. Nucleic Acids Res Article Molecular dynamics simulations have been performed on netropsin in two different charge states and on distamycin binding to the minor groove of the DNA duplex d(CGCGAAAAACGCG)·d(CGCGTTTTTCGCG). The relative free energy of binding of the two non-covalently interacting ligands was calculated using the thermodynamic integration method and reflects the experimental result. From 2 ns simulations of the ligands free in solution and when bound to DNA, the mobility and the hydrogen-bonding patterns of the ligands were studied, as well as their hydration. It is shown that even though distamycin is less hydrated than netropsin, the loss of ligand–solvent interactions is very similar for both ligands. The relative mobilities of the ligands in their bound and free forms indicate a larger entropic penalty for distamycin when binding to the minor groove compared with netropsin, partially explaining the lower binding affinity of the distamycin molecule. The detailed structural and energetic insights obtained from the molecular dynamics simulations allow for a better understanding of the factors determining ligand–DNA binding. Oxford University Press 2005 2005-02-01 /pmc/articles/PMC548343/ /pubmed/15687382 http://dx.doi.org/10.1093/nar/gki195 Text en © The Author 2005. Published by Oxford University Press. All rights reserved
spellingShingle Article
Dolenc, Jožica
Oostenbrink, Chris
Koller, Jože
van Gunsteren, Wilfred F.
Molecular dynamics simulations and free energy calculations of netropsin and distamycin binding to an AAAAA DNA binding site
title Molecular dynamics simulations and free energy calculations of netropsin and distamycin binding to an AAAAA DNA binding site
title_full Molecular dynamics simulations and free energy calculations of netropsin and distamycin binding to an AAAAA DNA binding site
title_fullStr Molecular dynamics simulations and free energy calculations of netropsin and distamycin binding to an AAAAA DNA binding site
title_full_unstemmed Molecular dynamics simulations and free energy calculations of netropsin and distamycin binding to an AAAAA DNA binding site
title_short Molecular dynamics simulations and free energy calculations of netropsin and distamycin binding to an AAAAA DNA binding site
title_sort molecular dynamics simulations and free energy calculations of netropsin and distamycin binding to an aaaaa dna binding site
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC548343/
https://www.ncbi.nlm.nih.gov/pubmed/15687382
http://dx.doi.org/10.1093/nar/gki195
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