Published May 9, 2003 | Version Supplemental Material
Journal Article Open

Alternative heterocycles for DNA recognition: the benzimidazole/imidazole pair

  • 1. ROR icon California Institute of Technology

Abstract

Boc-protected benzimidazole-pyrrole, benzimidazole-imidazole, and benzimidazole-methoxypyrrole amino acids were synthesized and incorporated into DNA binding polyamides, comprised of N-methyl pyrrole and N-methyl imidazole amino acids, by means of solid-phase synthesis on an oxime resin. These hairpin polyamides were designed to determine the DNA recognition profile of a side-by-side benzimidazole/imidazole pair for the designated six base pair recognition sequence. Equilibrium association constants of the polyamide-DNA complexes were determined at two of the six base pair positions of the recognition sequence by quantitative DNase I footprinting titrations on DNA fragments each containing matched and single base pair mismatched binding sites. The results indicate that the benzimidazole-heterocycle building blocks can replace pyrrole-pyrrole, pyrrole-imidazole, and pyrrole-hydroxypyrrole constructs while retaining relative site specifities and subnanomolar match site affinities. The benzimidazole-containing hairpin polyamides represent a novel class of DNA binding ligands featuring tunable target recognition sequences combined with the favorable properties of the benzimidazole type DNA minor groove binders.

Additional Information

© 2002 WILEY-VCH. Received: December 19, 2002. We are grateful to the National Institute of Health (GM-27681) for research support, to the Alexander von Humboldt-Foundation for a Feodor-Lynen grant to C.A.B. and to the Swiss National Science Foundation for a postdoctoral fellowship to P.W. We also wish to thank Michael A. Marques for conducting the ab initio calculations.

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Additional details

Identifiers

Eprint ID
66805
Resolver ID
CaltechAUTHORS:20160510-080156699

Funding

NIH
GM-27681
Alexander von Humboldt Foundation
Swiss National Science Foundation (SNSF)

Dates

Created
2016-05-17
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Updated
2021-11-11
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