Welcome to the new version of CaltechAUTHORS. Login is currently restricted to library staff. If you notice any issues, please email coda@library.caltech.edu
Published June 30, 2004 | Supplemental Material
Journal Article Open

NMR structure of a cyclic polyamide-DNA complex

Abstract

The solution structure of a cyclic polyamide ligand complexed to a DNA oligomer, derived from NMR restrained molecular mechanics, is presented. The polyamide, cyclo-gamma-ImPyPy-gamma-PyPyPy-, binds to target DNA with a nanomolar dissociation constant as characterized by quantitative footprinting previously reported. 2D (1)H NMR data were used to generate distance restraints defining the structure of this cyclic polyamide with the DNA duplex d(5'-GCCTGTTAGCG-3'):d(5'-CGCTAACAGGC-3'). Data interpretation used complete relaxation matrix analysis of the NOESY cross-peak intensities with the program MARDIGRAS. The NMR-based distance restraints (276 total) were applied in restrained molecular dynamics calculations using a solvent model, yielding structures with an rmsd for the ligand and binding site of approximately 1 A. The resulting structures indicate some distortion of the DNA in the binding site. The constraints from cyclization lead to altered stacking of the rings in the halves of the cyclic ligand relative to unlinked complexes. Despite this, the interactions with DNA are very similar to what has been found in unlinked complexes. Measurements of ligand amide and DNA imino proton exchange rates indicate very slow dissociation of the ligand and show that the DNA can undergo opening fluctuations while the ligand is bound although the presence of the ligand decreases their frequency relative to the free DNA.

Additional Information

© 2004 American Chemical Society. Received July 17, 2003. Publication Date (Web): June 2, 2004. This work was supported by NIH grants GM45811 (to D.A.C.) and GM43129 (to D.E.W.), and GM 27681 (to P.B.D.), and F33 GM63420 (to T.J.D.).

Attached Files

Supplemental Material - ja0373622si20030721_053740.pdb

Supplemental Material - ja0373622si20040309_022517.pdf

Files

ja0373622si20040309_022517.pdf
Files (1.6 MB)
Name Size Download all
md5:733a2a6a0644d41d0256039efd05a9df
172.4 kB Preview Download
md5:f1e4ded3fef1e441177274bce8ca5d52
1.4 MB Download

Additional details

Created:
August 19, 2023
Modified:
October 18, 2023