An NF-κB–driven lncRNA orchestrates colitis and circadian clock

S Wang, Y Lin, F Li, Z Qin, Z Zhou, L Gao, Z Yang… - Science …, 2020 - science.org
S Wang, Y Lin, F Li, Z Qin, Z Zhou, L Gao, Z Yang, Z Wang, B Wu
Science advances, 2020science.org
We uncover a cycling and NF-κB–driven lncRNA (named Lnc-UC) that epigenetically
modifies transcription of circadian clock gene Rev-erb α, thereby linking circadian clock to
colitis. Cycling expression of Lnc-UC is generated by the central clock protein Bmal1 via an
E-box element. NF-κB activation in experimental colitis transcriptionally drives Lnc-UC
through direct binding to two κB sites. Lnc-UC ablation disrupts colonic expressions of clock
genes in mice; particularly, Rev-erb α is down-regulated and its diurnal rhythm is blunted …
We uncover a cycling and NF-κB–driven lncRNA (named Lnc-UC) that epigenetically modifies transcription of circadian clock gene Rev-erbα, thereby linking circadian clock to colitis. Cycling expression of Lnc-UC is generated by the central clock protein Bmal1 via an E-box element. NF-κB activation in experimental colitis transcriptionally drives Lnc-UC through direct binding to two κB sites. Lnc-UC ablation disrupts colonic expressions of clock genes in mice; particularly, Rev-erbα is down-regulated and its diurnal rhythm is blunted. Consistently, Lnc-UC promotes expression of Rev-erbα (a known dual NF-κB/Nlrp3 repressor) to inactivate NF-κB signaling and Nlrp3 inflammasome in macrophages. Furthermore, Lnc-UC ablation sensitizes mice to experimental colitis and abolishes the diurnal rhythmicity in disease severity. Mechanistically, Lnc-UC physically interacts with Cbx1 protein to reduce its gene silencing activity via H3K9me3, thereby enhancing Rev-erbα transcription and expression. In addition, we identify a human Lnc-UC that has potential to promote Rev-erbα expression and restrain inflammations.
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