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NFATC3 promotes IRF7 transcriptional activity in plasmacy--toid dendritic cells.


ABSTRACT: Plasmacytoid dendritic cells (pDCs) rapidly produce large amounts of type 1 interferon (IFN) after Toll-like receptor 7 and 9 engagements. This specialized function of type 1 IFN production is directly linked to the constitutive expression of IRF7, the master transcription factor for type 1 IFN production. However, the IRF7 regulatory network in pDCs remains largely unknown. In this study, we identify that the transcription factor NFATC3 specifically binds to IRF7 and enhances IRF7-mediated IFN production. Furthermore, knockout of NFATC3 greatly reduced the CpG DNA-induced nuclear translocation of IRF7, which resulted in impaired type 1 IFN production in vitro and in vivo. In addition, we found that NFATC3 and IRF7 both bound to type 1 IFN promoters and that the NFAT binding site in IFN promoters was required for IRF7-mediated IFN expression. Collectively, our study shows that the transcription factor NFATC3 binds to IRF7 and functions synergistically to enhance IRF7-mediated IFN expression in pDCs.

SUBMITTER: Bao M 

PROVIDER: S-EPMC5068237 | biostudies-literature | 2016 Oct

REPOSITORIES: biostudies-literature

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NFATC3 promotes IRF7 transcriptional activity in plasmacy--toid dendritic cells.

Bao Musheng M   Wang York Y   Liu Ying Y   Shi Peiqing P   Lu Hongbo H   Sha Wenwen W   Weng Leiyun L   Hanabuchi Shino S   Qin Jun J   Plumas Joel J   Chaperot Laurence L   Zhang Zhiqiang Z   Liu Yong-Jun YJ  

The Journal of experimental medicine 20161003 11


Plasmacytoid dendritic cells (pDCs) rapidly produce large amounts of type 1 interferon (IFN) after Toll-like receptor 7 and 9 engagements. This specialized function of type 1 IFN production is directly linked to the constitutive expression of IRF7, the master transcription factor for type 1 IFN production. However, the IRF7 regulatory network in pDCs remains largely unknown. In this study, we identify that the transcription factor NFATC3 specifically binds to IRF7 and enhances IRF7-mediated IFN  ...[more]

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