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AP-1 subunits: quarrel and harmony among siblings

Journal of Cell Science · 2004 · Vol. 117(25) · pp. 5965–5973
Jochen HeßPeter AngelMarina Schorpp‐Kistner

Abstract

The AP-1 transcription factor is mainly composed of Jun, Fos and ATF protein dimers. It mediates gene regulation in response to a plethora of physiological and pathological stimuli, including cytokines, growth factors, stress signals, bacterial and viral infections, as well as oncogenic stimuli. Studies in genetically modified mice and cells have highlighted a crucial role for AP-1 in a variety of cellular events involved in normal development or neoplastic transformation causing cancer. However, emerging evidence indicates that the contribution of AP-1 to determination of cell fates critically depends on the relative abundance of AP-1 subunits, the composition of AP-1 dimers, the quality of stimulus, the cell type and the cellular environment. Therefore, AP-1-mediated regulation of processes such as proliferation, differentiation, apoptosis and transformation should be considered within the context of a complex dynamic network of signalling pathways and other nuclear factors that respond simultaneously.

Retinoids in leukemia and cellular processesCell death mechanisms and regulationMelanoma and MAPK PathwaysBiologyTranscription factorCell biologySignal transductionCell growthStimulus (psychology)Neoplastic transformationGeneGeneticsCarcinogenesis

MeSH terms

DimerizationCell LineageAmino Acid SequenceAnimalsCell DifferentiationCell SurvivalHumansModels, BiologicalModels, MolecularMolecular Sequence DataNeoplasmsSignal TransductionKeratinocytesProto-Oncogene Proteins c-junProto-Oncogene Proteins c-fos
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References
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Nature Cell Biology · 2002 · 2,929 citations
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Oncogene · 2001 · 1,768 citations
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AP-1 subunits: quarrel and harmony among siblings · Scinovex