European Journal of Organic Chemistry · 2010 · 11 citations · 16 references
Diversity Oriented SynthesisDerivativesEngineeringBiochemistryHeterocyclicNatural SciencesUnique AccessDiversity-oriented SynthesisCaptodative OlefinRadical (Chemistry)Organic ChemistrySynthetic ChemistryStereoselective SynthesisHeterocycle ChemistryCaptodative OlefinsPharmacologyVerdazyl RadicalsBiomolecular Engineering
Abstract 1,5‐Dimethyl‐3‐phenyl‐6‐oxoverdazyl radical was recently shown to undergo a disproportionation reaction to form an azomethine imine, which reacted with a series of dipolarophiles, to form novel tetrahydropyrazolotetrazinone heterocyclic structures, demonstrating for the first time the use of verdazyl radicals as substrates for organic synthesis. Herein, we report on the chemistry of this verdazyl radical with captodative olefins and show that the reactions that occur, either an addition reaction or a hydrogen abstraction reaction followed by a cycloaddition reaction, are defined by the captodative olefin. Also highlighted is an intramolecular rearrangement of initially formed tetrahydropyrazolotetrazinone cycloadducts to either pyrazolotriazinone or tetrahydropyrazolotriazinone structures. While the rearrangement falls under the very general definition of the Dimroth rearrangement, the mechanism that is proposed is distinct and provides the opportunity to go from one particular structural motif to another under mild conditions, expanding the usefulness of this chemistry.
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Low molecular weight inhibitors of Myc–Max interaction and function
Xiaoying Yin, Christine Giap, John S. Lazo et al. · Oncogene · 2003 · 421 citations
Improved low molecular weight Myc-Max inhibitors
Huabo Wang, Dalia I. Hammoudeh, Ariele Viacava Follis et al. · Molecular Cancer Therapeutics · 2007 · 186 citations · Full text