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Dissociation of minor groove binders from DNA: insights from metadynamics simulations

VARGIU A. V
•
RUGGERONE P
•
MAGISTRATO, ALESSANDRA
•
CARLONI P.
2008
  • journal article

Periodico
NUCLEIC ACIDS RESEARCH
Abstract
We have used metadynamics to investigate the mechanism of noncovalent dissociation from DNA by two representatives of alkylating and noncovalent minor groove (MG) binders. The compounds are anthramycin in its anhydrous form (IMI) and distamycin A (DST), which differ in mode of binding, size, flexibility and net charge. This choice enables to evaluate the influence of such factors on the mechanism of dissociation. Dissociation of IMI requires an activation free energy of similar to 12 kcal/mol and occurs via local widening of the MG and loss of contacts between the drug and one DNA strand, along with the insertion of waters in between. The detachment of DST occurs at a larger free energy cost, similar to 16.5 or similar to 18 kcal/mol depending on the binding mode. These values compare well with that of 16.6 kcal/mol extracted from stopped-flow experiments. In contrast to IMI, an intermediate is found in which the ligand is anchored to the DNA through its amidinium tail. From this conformation, binding and unbinding occur almost at the same rate. Comparison between DST and with kinetic models for the dissociation of Hoechst 33258 from DNA uncovers common characteristics across different classes of noncovalent MG ligands.
DOI
10.1093/nar/gkn561
WOS
WOS:000260152900017
Archivio
http://hdl.handle.net/20.500.11767/33279
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-54549100470
Diritti
open access
Scopus© citazioni
57
Data di acquisizione
Jun 14, 2022
Vedi dettagli
Web of Science© citazioni
57
Data di acquisizione
Mar 22, 2024
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