Published in Genes Dev on August 01, 2002
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How Drosophila melanogaster Forms its Mechanoreceptors. Curr Genomics (2008) 0.79
Spatial specificity of mesodermal even-skipped expression relies on multiple repressor sites. Dev Biol (2007) 0.79
Common and distinct DNA-binding and regulatory activities of the BEN-solo transcription factor family. Genes Dev (2015) 0.78
Differential regulation of transcription through distinct Suppressor of Hairless DNA binding site architectures during Notch signaling in proneural clusters. Mol Cell Biol (2010) 0.78
Structure and Function of the Su(H)-Hairless Repressor Complex, the Major Antagonist of Notch Signaling in Drosophila melanogaster. PLoS Biol (2016) 0.78
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Requirement of Split ends for epigenetic regulation of Notch signal-dependent genes during infection-induced hemocyte differentiation. Mol Cell Biol (2009) 0.76
Sequential Notch signalling at the boundary of fringe expressing and non-expressing cells. PLoS One (2012) 0.76
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The bHLH-PAS transcription factor dysfusion regulates tarsal joint formation in response to Notch activity during drosophila leg development. PLoS Genet (2014) 0.75
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A model Notch response element detects Suppressor of Hairless-dependent molecular switch. Curr Biol (2001) 2.65
ZEB represses transcription through interaction with the corepressor CtBP. Proc Natl Acad Sci U S A (1999) 2.64
p300 acts as a transcriptional coactivator for mammalian Notch-1. Mol Cell Biol (2001) 2.64
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Conversion of dorsal from an activator to a repressor by the global corepressor Groucho. Genes Dev (1997) 1.99
Repression by suppressor of hairless and activation by Notch are required to define a single row of single-minded expressing cells in the Drosophila embryo. Genes Dev (2000) 1.87
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Both inhibition and activation of Notch signaling rely on a conserved Neuralized-binding motif in Bearded proteins and the Notch ligand Delta. Dev Biol (2009) 0.84