Proceedings of the National Academy of Sciences · 2009 · 168 citations · 30 references
Molecular RegulationInnate Immune SystemMolecular BiologyCell DeathMolecular GeneticsInnate ImmunityDrosophila Ikappab KinaseCell SignalingProtein FunctionAntimicrobial Peptide GenesGene ExpressionCell BiologyProtein PhosphorylationTranscription RegulationBiologySignal TransductionNatural SciencesPathogenesisGene RegulationRelish CleavageMicrobiologyMedicineSerines 528
The Drosophila NF-kappaB transcription factor Relish is an essential regulator of antimicrobial peptide gene induction after gram-negative bacterial infection. Relish is a bipartite NF-kappaB precursor protein, with an N-terminal Rel homology domain and a C-terminal IkappaB-like domain, similar to mammalian p100 and p105. Unlike these mammalian homologs, Relish is endoproteolytically cleaved after infection, allowing the N-terminal NF-kappaB module to translocate to the nucleus. Signal-dependent activation of Relish, including cleavage, requires both the Drosophila IkappaB kinase (IKK) and death-related ced-3/Nedd2-like protein (DREDD), the Drosophila caspase-8 like protease. In this report, we show that the IKK complex controls Relish by direct phosphorylation on serines 528 and 529. Surprisingly, these phosphorylation sites are not required for Relish cleavage, nuclear translocation, or DNA binding. Instead they are critical for recruitment of RNA polymerase II and antimicrobial peptide gene induction, whereas IKK functions noncatalytically to support Dredd-mediated cleavage of Relish.
30
Bruno Lemaître, Jean‐Marc Reichhart · Proceedings of the National Academy of Sciences · 1997 · 1K citations · Full text
RNA polymerase is poised for activation across the genome
Ginger W. Muse, Daniel A. Gilchrist, Sergei Nechaev et al. · Nature Genetics · 2007 · 748 citations · Full text
Bruno Lemaître, Elisabeth KROMER‐METZGER, Lydia Michaut et al. · Proceedings of the National Academy of Sciences · 1995 · 623 citations · Full text