Minor Groove DNA Binders as Antimicrobial Agents. 1. Pyrrole Tetraamides Are Potent Antibacterials against Vancomycin Resistant Enteroccoci and Methicillin Resistant Staphylococcus aureus
- 11 January 2002
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of Medicinal Chemistry
- Vol. 45 (4) , 805-817
- https://doi.org/10.1021/jm010375a
Abstract
A new series of short pyrrole tetraamides are described whose submicromolar DNA binding affinity is an essential component for their strong antibacterial activity. This class of compounds is related to the linked bis-netropsins and bis-distamycins, but here, only one amino-pyrrole-carboxamide unit and an amidine tail is connected to either side of a central dicarboxylic acid linker. The highest degree of DNA binding, measured by compound-induced changes in UV melting temperatures of an AT-rich DNA oligomer, was observed for flat, aromatic linkers with no inherent bent, i.e., terephthalic acid or 1,4-pyridine-dicarboxylic acid. However, the antibacterial activity is critically linked to the size of the N-alkyl substiutent of the pyrrole unit. None of the tetraamides with the commonly used methyl-pyrrole showed antibacterial activity. Isoamyl- or cyclopropylmethylene-substituted dipyrrole derivatives have the minimum inhibitory concentrations in the submicromolar range. In vitro toxicity against human T-cells was studied for all compounds. The degree to which compounds inhibited cell growth was neither directly correlated to DNA binding affinity nor directly correlated to antibacterial activity but seemed to depend strongly on the nature of the N-alkyl pyrrole substituents.Keywords
This publication has 20 references indexed in Scilit:
- Molecular mechanisms that confer antibacterial drug resistanceNature, 2000
- Designed Sequence-Specific Minor Groove LigandsAnnual Review of Biophysics, 2000
- Sequence-specific DNA recognition by polyamidesCurrent Opinion in Chemical Biology, 1999
- Synthetic DNA minor groove-binding drugs☆☆Editor's Note: Figures 1–99 appear throughout text. Structures 1–271 appear together at the end of this article, although Structures 25, 111–147, 162–181, 182–188, and 241–255 also appear within Tables 1–5.Pharmacology & Therapeutics, 1999
- Highly Potent Synthetic Polyamides, Bisdistamycins, and Lexitropsins as Inhibitors of Human Immunodeficiency Virus Type 1 IntegraseMolecular Pharmacology, 1998
- Drug—DNA interactionsCurrent Opinion in Structural Biology, 1998
- Complexes of the Minor Groove of DNAAnnual Review of Biophysics, 1995
- Heteroarenobenzodiazepines. 6. Synthesis and pharmacological evaluation of CNS activities of [1,2,3]triazolo[4,5-b][1,5]-, imidazolo[4,5,-b][1,5]-, and pyrido[2,3-b][1,5]benzodiazepines. 10-Piperazinyl-4H-1,2,3-triazolo[4,5-b][1,5]benzodiazepines with neuroleptic activityJournal of Medicinal Chemistry, 1989
- A new type of AT‐specific ligand constructed of two netropsin‐like moleculesFEBS Letters, 1980
- Structure-activity relationships of pyrroleamidine antiviral antibiotics. 1. Modifications of the alkylamidine side chainJournal of Medicinal Chemistry, 1979