Proceedings of the National Academy of Sciences · 1996 · 361 citations · 35 references
GeneticsInnate Immune SystemImmunologyGenomic MechanismMolecular GeneticsInnate ImmunityAntibacterial DefenseCompound Rel ProteinHost-pathogen InteractionsCompound Rel-like GeneHost ResistanceImmune FunctionCompound Drosophila ProteinHost-microbe InteractionGene ExpressionRelish TranscriptDevelopmental BiologyPathogenesisGene RegulationMicrobiologySystems BiologyMedicine
NF-kappa B/Rel transcription factors are central regulators of mammalian immunity and are also implicated in the induction of cecropins and other antibacterial peptides in insects. We identified the gene for Relish, a compound Drosophila protein that, like mammalian p105 and p100, contains both a Rel homology domain and an I kappa B-like domain. Relish is strongly induced in infected flies, and it can activate transcription from the Cecropin A1 promoter. A Relish transcript is also detected in early embryos, suggesting that it acts in both immunity and embryogenesis. The presence of a compound Rel protein in Drosophila indicates that similar proteins were likely present in primordial immune systems and may serve unique signaling functions.
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λ ZAP: a bacteriophage λ expression vector with<i>in vivo</i>excision properties
Jay M. Short, Joseph M. Fernandez, Joseph A. Sorge et al. · Nucleic Acids Research · 1988 · 1.4K citations
E. Britta-Mareen Traenckner, Heike L. Pahl, Timothy P. Henkel et al. · The EMBO Journal · 1995 · 1K citations · Full text
Signal Transduction, Molecular Physiology, Signaling Pathway +10