NF-κB modifies the mammalian circadian clock through interaction with the core clock protein BMAL1
Liu, A. C.; Shen, Y.; Wang, W.; Endale, M.; Francey, L. J.; Harold, R. L.; Hammers, D. W.; Huo, Z.; Partch, C. L.; Hogenesch, J.; Wu, Z.-H.
Show abstract
In mammals, the circadian clock coordinates various cell physiological processes, including the inflammatory response. Recent studies suggested a crosstalk between these two pathways. However, the mechanism of how inflammation affects the circadian clock is not well understood. Here, we investigated the role of the proinflammatory transcription factor NF-{kappa}B in regulating clock function. Using a combination of genetic and pharmacological approaches, we show that perturbation of the canonical NF-{kappa}B subunit RELA in the U2OS cellular model altered core clock gene expression. While RELA activation shortened period length and dampened amplitude in these cells, its inhibition lengthened period length and caused amplitude phenotypes. NF-{kappa}B perturbation also altered circadian rhythms in the master suprachiasmatic nucleus (SCN) clock and locomotor activity. We show that RELA, like the clock repressor CRY1, potently repressed the transcriptional activity of BMAL1/CLOCK at the circadian E-box cis-element. Biochemical and biophysical analysis showed that RELA competes with coactivator CBP/p300 for binding to the transactivation domain of BMAL1. This mechanism is further supported by chromatin immunoprecipitation analysis showing that the binding sites of RELA, BMAL1 and CLOCK converge on the E-boxes of clock genes. Taken together, these data support a significant role for NF-{kappa}B in directly regulating circadian clock function and highlight mutual regulation between the circadian and inflammatory pathways.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- IRAK1-dependent Regnase-1-14-3-3 complex formation controls Regnase-1-mediated mRNA decay 95%
- The nutrient-sensing GCN2 signaling pathway is essential for circadian clock function by regulating histone acetylation under amino acid starvation 94%
- YAP and TAZ are transcriptional co-activators of AP-1 proteins and STAT3 during breast cellular transformation 94%
Similar papers in this journal
- Circadian oscillation in primary cilium length by clock genes regulate fibroblast cell migration 94%
- Activation of FAM111A Protease Induces Defects in Nuclear Function that Likely Underlie its Roles in Disease and Viral Restriction 93%
- The proximity-based protein interaction landscape of the transcription factor p65 NF-kappaB/RELA and its gene-regulatory logics 93%
Similar papers in this journal
- Arc/Arg3.1 binds the nuclear polyadenylate-binding protein RRM and regulates neuronal activity-dependent formation of nuclear speckles 94%
- The GATA transcription factor Gaf1 represses tRNA genes, inhibits growth, and extends chronological lifespan downstream of fission yeast TORC1 94%
- MeCP2 Represses the Activity of Topoisomerase IIβ in Long Neuronal Genes 93%
Similar papers in this journal
- A repeatedly evolved mutation in Cryptochrome-1 of subterranean animals alters behavioral and molecular circadian rhythms 95%
- Antagonistic Regulation of Circadian Output and Synaptic Development by the E3 Ubiquitin Ligase JETLAG and the DYSCHRONIC-SLOWPOKE Complex 94%
- The circadian clock component BMAL1 regulates SARS-CoV-2 entry and replication in lung epithelial cells 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.