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BTB-ZF transcriptional regulator PLZF modifies chromatin to restrain inflammatory signaling programs
Author(s) -
Anthony J. Sadler,
Fernando J. Rossello,
Liang Yu,
James A. Deane,
Xiangliang Yuan,
Die Wang,
Aaron T. Irving,
Maria KaparakisLiaskos,
Michael P. Gantier,
Hangjie Ying,
Howard Chi Ho Yim,
Elizabeth L. Hartland,
A.J. Notini,
Suzan de Boer,
Stefan J. White,
Ashley Mansell,
JunPing Liu,
D. Neil Watkins,
Steve Gerondakis,
Bryan R.G. Williams,
Dakang Xu
Publication year - 2015
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.1409728112
Subject(s) - chromatin , inflammation , transcription factor , regulator , histone , repressor , chromatin remodeling , microbiology and biotechnology , biology , histone deacetylase , transcriptional regulation , epigenetics , immune system , immunology , gene , genetics
Inflammation is critical for host defense, but without appropriate control, it can cause chronic disease or even provoke fatal responses. Here we identify a mechanism that limits the inflammatory response. Probing the responses of macrophages to the key sensory Toll-like receptors, we identify that the Broad-complex, Tramtrack and Bric-a-brac/poxvirus and zinc finger (BTB/POZ), transcriptional regulator promyelocytic leukemia zinc finger (PLZF) limits the expression of inflammatory gene products. In accord with this finding, PLZF-deficient animals express higher levels of potent inflammatory cytokines and mount exaggerated inflammatory responses to infectious stimuli. Temporal quantitation of inflammatory gene transcripts shows increased gene induction in the absence of PLZF. Genome-wide analysis of histone modifications distinguish that PLZF establishes basal activity states of early response genes to maintain immune homeostasis and limit damaging inflammation. We show that PLZF stabilizes a corepressor complex that encompasses histone deacetylase activity to control chromatin. Together with our previous demonstration that PLZF promotes the antiviral response, these results suggest a strategy that could realize one of the major goals of immune therapy to retain immune resistance to pathogens while curbing damaging inflammation.

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