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Cryptic activation of an Irf8 enhancer governs cDC1 fate specification

Authors :
Kenneth M. Murphy
Gary E. Grajales-Reyes
Rodney D. Newberry
Carlos G. Briseño
Prachi Bagadia
Howard Y. Chang
Theresa L. Murphy
Vivek Durai
Swapneel J. Patel
Xiao Huang
Hiromi Tagoh
Jeffrey M. Granja
Miriam Wöhner
Jesse T. Davidson
Barbara L. Kee
Ansuman T. Satpathy
Tian Tian Liu
Renee Wu
Meinrad Busslinger
Arifumi Iwata
Devesha H. Kulkarni
Source :
Nature immunology
Publication Year :
2019

Abstract

Induction of the transcription factor Irf8 in the common dendritic cell progenitor (CDP) is required for classical type 1 dendritic cell (cDC1) fate specification, but the mechanisms controlling this induction are unclear. In the present study Irf8 enhancers were identified via chromatin profiling of dendritic cells and CRISPR/Cas9 genome editing was used to assess their roles in Irf8 regulation. An enhancer 32 kilobases (kb) downstream of the Irf8 transcriptional start site (+32-kb Irf8) that was active in mature cDC1s was required for the development of this lineage, but not for its specification. Instead, a +41-kb Irf8 enhancer, previously thought to be active only in plasmacytoid dendritic cells, was found to also be transiently accessible in cDC1 progenitors, and deleting this enhancer prevented the induction of Irf8 in CDPs and abolished cDC1 specification. Thus, cryptic activation of the +41-kb Irf8 enhancer in dendritic cell progenitors is responsible for cDC1 fate specification. The transcription factor IRF8 is essential for classical type 1 dendritic cell (cDC1) development. Murphy and colleagues investigate in detail the molecular control of cDC1 fate specification by systematically unpicking the IRF8 enhancer regions.

Details

Language :
English
ISSN :
15292916 and 15292908
Volume :
20
Issue :
9
Database :
OpenAIRE
Journal :
Nature immunology
Accession number :
edsair.doi.dedup.....c9ef9c16706916c827ba8c303855412c