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Specification of hematopoietic and vascular development by the bHLH transcription factor SCL without direct DNA binding
161
Citations
53
References
1999
Year
Lymphocyte DevelopmentMixed-phenotype Acute LeukemiaGeneticsBlood CellEpigeneticsMyeloid NeoplasiaHematological MalignancyTranscriptional RegulationHematologyVascular DevelopmentTranscription FactorsDirect Dna BindingVascular BiologyGene ExpressionCell BiologyMyelopoiesisTranscription RegulationScl VariantsChromatinDevelopmental BiologyBhlh FactorSystems BiologyMedicine
Transcription factors, such as those of the basic-helix-loop-helix (bHLH) and homeodomain classes, are primary regulators of cell fate decisions and differentiation. It is considered axiomatic that they control their respective developmental programs via direct binding to cognate DNA sequences in critical targets genes. Here we test this widely held paradigm by in vivo functional assay of the leukemia oncoprotein SCL, a bHLH factor that resembles myogenic and neurogenic proteins and is essential for both hematopoietic and vascular development in vertebrates. Contrary to all expectation, we find that SCL variants unable to bind DNA rescue hematopoiesis from gene-targeted SCL(-)(/)(-) embryonic stem cells and complement hematopoietic and vascular deficits in the zebrafish mutant cloche. Our findings establish DNA-binding-independent functions of SCL critical for transcriptional specification, and should encourage reassessment of presumed requirements for direct DNA binding by other transcription factors during initiation of developmental programs.
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