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NF-κB signaling plays a pivotal role in control of the inflammatory response. We investigated how the dynamics and function of NF-κB were affected by temperature within the mammalian physiological range (34 °C to 40 °C). An increase in temperature led to an increase in NF-κB nuclear/cytoplasmic oscillation frequency following Tumor Necrosis Factor alpha (TNFα) stimulation. Mathematical modeling suggested that this temperature sensitivity might be due to an A20-dependent mechanism, and A20 silencing removed the sensitivity to increased temperature. The timing of the early response of a key set of NF-κB target genes showed strong temperature dependence. The cytokine-induced expression of many (but not all) later genes was insensitive to temperature change (suggesting that they might be functionally temperature-compensated). Moreover, a set of temperature- and TNFα-regulated genes were implicated in NF-κB cross-talk with key cell-fate-controlling pathways. In conclusion, NF-κB dynamics and target gene expression are modulated by temperature and can accurately transmit multidimensional information to control inflammation.

Original publication

DOI

10.1073/pnas.1803609115

Type

Journal article

Journal

Proc Natl Acad Sci U S A

Publication Date

29/05/2018

Volume

115

Pages

E5243 - E5249

Keywords

A20, NF-κB, dynamics, temperature, transcription, Animals, Cell Line, Tumor, Cells, Cultured, Cytokines, Gene Expression Regulation, Gene Knockdown Techniques, Humans, Inflammation, Mice, NF-kappa B, Signal Transduction, Temperature, Tumor Necrosis Factor alpha-Induced Protein 3, Tumor Necrosis Factor-alpha