Molecular and Cellular Biology · 2006 · 62 citations · 52 references
ApoptosisImmunologyCell DeathPathologyImmunologic MechanismImmunotherapyHsp70 Gene ExpressionInflammationSignaling PathwayCell RegulationAutophagyFibroblast Growth FactorCell SignalingIng ProteinsGene ExpressionCell BiologyTumor MicroenvironmentCytokineSignal TransductionHsp70 InductionTumor SuppressorMedicine
ING proteins affect apoptosis, growth, and DNA repair by transducing stress signals such as DNA damage, binding histones, and subsequently regulating chromatin structure and p53 activity. p53 target genes, including the p21 cyclin-dependent kinase inhibitor and Bax, an inducer of apoptosis, are regulated by ING proteins. To identify additional targets downstream of p33ING1 and p32ING2, cDNA microarrays were performed on phenotypically normal human primary fibroblasts. The 0.36% of genes affected by ING proteins in primary fibroblasts were distinct from targets seen in established cells and included the HSP70 heat shock gene, whose promoter was specifically induced >10-fold. ING1-induced expression of HSP70 shifted cells from survival to a death pathway in response to tumor necrosis factor alpha (TNF-alpha), and p33ING1b protein showed synergy with TNF-alpha in inducing apoptosis, which correlated with reduced NF-kappaB-dependent transcription. These findings are consistent with previous reports that HSP70 promotes TNF-alpha-mediated apoptosis by binding I-kappaBeta kinase gamma and impairing NF-kappaB survival signaling. Induction of HSP70 required the amino terminus of ING1b but not the plant homeodomain region that was recently identified as a histone binding domain. Regulation of HSP70 gene expression by the ING tumor suppressors provides a novel link between the INGs and the stress-regulated NF-kappaB survival pathway important in hypoxia and angiogenesis.
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Impairment of the Ubiquitin-Proteasome System by Protein Aggregation
Neil Bence, Roopal M. Sampat, Ron R. Kopito · Science · 2001 · 2.2K citations
ING2 PHD domain links histone H3 lysine 4 methylation to active gene repression
Xiaobing Shi, Tao Hong, Kay L. Walter et al. · Nature · 2006 · 920 citations · Full text
Histone Modifications, Chromatin, Transcriptional Regulation +15
Molecular mechanism of histone H3K4me3 recognition by plant homeodomain of ING2
Pedro V. Peña, Foteini Davrazou, Xiaobing Shi et al. · Nature · 2006 · 671 citations · Full text