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Synergistic gene expression during the acute phase response is characterized by transcription factor assisted loading.


ABSTRACT: The cytokines interleukin 1? and 6 (IL-1?, IL-6) mediate the acute phase response (APR). In liver, they regulate the secretion of acute phase proteins. Using RNA-seq in primary hepatocytes, we show that these cytokines regulate transcription in a bifurcated manner, leading to both synergistic and antagonistic gene expression. By mapping changes in enhancer landscape and transcription factor occupancy (using ChIP-seq), we show that synergistic gene induction is achieved by assisted loading of STAT3 on chromatin by NF-?B. With IL-6 treatment alone, STAT3 does not efficiently bind 20% of its coordinated binding sites. In the presence of IL-1?, NF-?B is activated, binds a subset of enhancers and primes their activity, as evidenced by increasing H3K27ac. This facilitates STAT3 binding and synergistic gene expression. Our findings reveal an enhancer-specific crosstalk whereby NF-?B enables STAT3 binding at some enhancers while perturbing it at others. This model reconciles seemingly contradictory reports of NF-?B-STAT3 crosstalk.

SUBMITTER: Goldstein I 

PROVIDER: S-EPMC5707366 | biostudies-literature | 2017 Nov

REPOSITORIES: biostudies-literature

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Synergistic gene expression during the acute phase response is characterized by transcription factor assisted loading.

Goldstein Ido I   Paakinaho Ville V   Baek Songjoon S   Sung Myong-Hee MH   Hager Gordon L GL  

Nature communications 20171129 1


The cytokines interleukin 1β and 6 (IL-1β, IL-6) mediate the acute phase response (APR). In liver, they regulate the secretion of acute phase proteins. Using RNA-seq in primary hepatocytes, we show that these cytokines regulate transcription in a bifurcated manner, leading to both synergistic and antagonistic gene expression. By mapping changes in enhancer landscape and transcription factor occupancy (using ChIP-seq), we show that synergistic gene induction is achieved by assisted loading of STA  ...[more]

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