JOURNAL ARTICLE

Quinone Methides Tethered to Naphthalene Diimides as Selective G-Quadruplex Alkylating Agents

Marco Di AntonioFilippo DoriaSara N. RichterCarolina BertipagliaMariella MellaClaudia SissiManlio PalumboMauro Freccero

Year: 2009 Journal:   Journal of the American Chemical Society Vol: 131 (36)Pages: 13132-13141   Publisher: American Chemical Society

Abstract

We have developed novel G-quadruplex (G-4) ligand/alkylating hybrid structures, tethering the naphthalene diimide moiety to quaternary ammonium salts of Mannich bases, as quinone-methide precursors, activatable by mild thermal digestion (40 degrees C). The bis-substituted naphthalene diimides were efficiently synthesized, and their reactivity as activatable bis-alkylating agents was investigated in the presence of thiols and amines in aqueous buffered solutions. The electrophilic intermediate, quinone-methide, involved in the alkylation process was trapped, in the presence of ethyl vinyl ether, in a hetero Diels-Alder [4 + 2] cycloaddition reaction, yielding a substituted 2-ethoxychroman. The DNA recognition and alkylation properties of these new derivatives were investigated by gel electrophoresis, circular dichroism, and enzymatic assays. The alkylation process occurred preferentially on the G-4 structure in comparison to other DNA conformations. By dissecting reversible recognition and alkylation events, we found that the reversible process is a prerequisite to DNA alkylation, which in turn reinforces the G-quadruplex structural rearrangement.

Keywords:
Chemistry Alkylation Quinone methide Moiety Quinone Naphthalene Electrophile Combinatorial chemistry Stereochemistry Organic chemistry Catalysis

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Citation History

Topics

DNA and Nucleic Acid Chemistry
Life Sciences →  Biochemistry, Genetics and Molecular Biology →  Molecular Biology
Advanced biosensing and bioanalysis techniques
Life Sciences →  Biochemistry, Genetics and Molecular Biology →  Molecular Biology
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Life Sciences →  Biochemistry, Genetics and Molecular Biology →  Molecular Biology
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