Chemistry of the Pyrrolo[1,2-a]benzimidazole Antitumor Agents: Influence of the 7-Substituent on the Ability To Alkylate DNA and Inhibit Topoisomerase II
- 1 January 1996
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of Medicinal Chemistry
- Vol. 39 (21) , 4321-4331
- https://doi.org/10.1021/jm960064d
Abstract
This study addresses the influence the 7-substituent on the cytotoxicity of pyrrolo[1,2-alpha]-benzimidazole quinones possessing a 6-aziridinyl group (PBIs) and a 6-acetamido group (APBIs). Reduction of a PBI to the aziridinyl hydroquinone results in both nucleophile trapping (alkylation) and 1,5-sigmatropic shift reactions. The latter process is essentially an internal redox reaction wherein the hydroquinone causes reductive opening of the aziridinyl ring. The 7-substituent controls the fate of the aziridinyl ring by means of steric and electronic effects. An electron-rich 7-substituent favors the 1,5-sigmatropic shift reaction. If the 7-substituent distorts the 6-aziridinyl group from the conformation required for the 1,5-sigmatropic shift, then nucleophile trapping occurs. The 7-methyl substituent results in significant nucleophilic trapping, and the 7-unsubstituted and 7-methoxy substituents favor the 1,5-sigmatropic reaction. Thus, the 7-methyl PBIs show the most cytotoxicity of the analogues studied. The APBIs are cytotoxic only as quinones, and reduction to the hydroquinone results in loss of activity. Consistent with this observation, the change from 7-methyl to the more electron-rich 7-methoxy results in a substantial loss of APBI cytotoxicity as well as decreased topoisomerase II inhibition. The mechanism of inhibition is thought to involve the interacalation of only electron deficient APBIs into DNA.Keywords
This publication has 19 references indexed in Scilit:
- Determination of the pKa Values for the Mitomycin C Redox Couple by Titration, pH Rate Profiles, and Nernst-Clark Fits. Studies of Methanol Elimination, Carbocation Formation, and the Carbocation/Quinone Methide EquilibriumThe Journal of Organic Chemistry, 1995
- Pyrrolo[1,2-a]benzimidazole-Based Quinones and Iminoquinones. The Role of the 3-Substituent on CytotoxicityJournal of Medicinal Chemistry, 1995
- Quinobenoxazines: A Class of Novel Antitumor Quinolones and Potent Mammalian DNA Topoisomerase II Catalytic InhibitorsBiochemistry, 1994
- A Comparison of the Cytotoxic and Physical Properties of Aziridinyl Quinone Derivatives Based on the Pyrrolo[1,2-a]benzimidazole and Pyrrolo[1,2-a]indole Ring SystemsJournal of Medicinal Chemistry, 1994
- Formation and fate of benzimidazole-based quinone methides. Influence of pH on quinone methide fateThe Journal of Organic Chemistry, 1992
- DNA crosslinking and sequence selectivity of aziridinylbenzoquinones: a unique reaction at 5'-GC-3' sequences with 2,5-diaziridinyl-1,4-benzoquinone upon reductionBiochemistry, 1991
- Structure-activity studies of antitumor agents based on pyrrolo[1,2-a]benzimidazoles: new reductive alkylating DNA cleaving agentsJournal of Medicinal Chemistry, 1991
- BenzimidazolesPublished by Wiley ,1981
- Reduction by a model of NAD(P)H. Effect of metal ion and stereochemistry on the reduction of .alpha.-keto esters by 1,4-dihydronicotinamide derivativesJournal of the American Chemical Society, 1975
- Studies on Ergot Alkaloids and Related Compounds. XIII. syntheses and Stereochemistries of 4-Methyl-1, 2, 3, -4, 4a, 5, 6, 10b-octahydrobenzo[f]quinoline-2-carboxylic AcidsCHEMICAL & PHARMACEUTICAL BULLETIN, 1966