Publication | Open Access
Transactivation and transformation by Myb are negatively regulated by a leucine-zipper structure.
116
Citations
25
References
1992
Year
Negative Regulatory DomainMolecular RegulationMolecular BiologyCellular PhysiologyTranscriptional RegulationCellular Regulatory MechanismCell SignalingProtein FunctionLeucine-zipper StructureProtein TransportGene ExpressionCell BiologyTranscription RegulationSignal TransductionNatural SciencesLeucine ZipperGene RegulationCellular StructureCellular BiochemistryMedicine
The negative regulatory domain of the c-myb protooncogene product (c-Myb) normally represses transcriptional activation by c-Myb. We show here that a leucine-zipper structure is a component of the negative regulatory domain, because its disruption markedly increases both the transactivating and transforming capacities of c-Myb. We also demonstrate that this leucine-zipper structure can interact with cellular proteins. Our results suggest that an inhibitor that suppresses transactivation binds to c-Myb through the leucine zipper and that c-Myb can be oncogenically activated by missense mutation.
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