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NF-κB, the first quarter-century: remarkable progress and outstanding questions

Genes & Development · 2012 · Vol. 26(3) · pp. 203–234
Matthew S. HaydenSankar Ghosh

Abstract

The ability to sense and adjust to the environment is crucial to life. For multicellular organisms, the ability to respond to external changes is essential not only for survival but also for normal development and physiology. Although signaling events can directly modify cellular function, typically signaling acts to alter transcriptional responses to generate both transient and sustained changes. Rapid, but transient, changes in gene expression are mediated by inducible transcription factors such as NF-κB. For the past 25 years, NF-κB has served as a paradigm for inducible transcription factors and has provided numerous insights into how signaling events influence gene expression and physiology. Since its discovery as a regulator of expression of the κ light chain gene in B cells, research on NF-κB continues to yield new insights into fundamental cellular processes. Advances in understanding the mechanisms that regulate NF-κB have been accompanied by progress in elucidating the biological significance of this transcription factor in various physiological processes. NF-κB likely plays the most prominent role in the development and function of the immune system and, not surprisingly, when dysregulated, contributes to the pathophysiology of inflammatory disease. As our appreciation of the fundamental role of inflammation in disease pathogenesis has increased, so too has the importance of NF-κB as a key regulatory molecule gained progressively greater significance. However, despite the tremendous progress that has been made in understanding the regulation of NF-κB, there is much that remains to be understood. In this review, we highlight both the progress that has been made and the fundamental questions that remain unanswered after 25 years of study.

NF-κB Signaling PathwaysImmune Response and InflammationNatural product bioactivities and synthesisBiologyTranscription factorMulticellular organismNF-κBCell biologyRegulation of gene expressionGene expressionFunction (biology)Transcriptional regulationSignal transduction

MeSH terms

AnimalsEnzyme ActivationGene Expression RegulationHumansImmune SystemSignal TransductionNF-kappa B

Funding

  • National Institutes of Health
Citations
1,651
FWCI
field-weighted impact
References
383
Percentile
vs. same field & year
Citations per year
References
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