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Cis-Regulatory Element and Transcription Factor Circuitry Required for Cell-Type Specific Expression of FOXP3
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SUMMARY
FOXP3 is a lineage-defining transcription factor (TF) for immune-suppressive regulatory T cells (Tregs). While mice exclusively express FOXP3 in Tregs, humans also transiently express FOXP3 in stimulated conventional CD4+ T cells (Tconvs). Mechanisms governing these distinct expression patterns remain unknown. Here, we performed CRISPR screens tiling the
FOXP3
locus and targeting TFs in human Tregs and Tconvs to discover cis-regulatory elements (CREs) and trans-regulators of FOXP3. Tconv FOXP3 expression depended on a subset of Treg CREs and Tconv-selective positive (TcNS+) and negative (TcNS-) CREs. The CREs are occupied and regulated by TFs we identified as critical regulators of FOXP3. Finally, mutagenesis of murine TcNS- revealed that it is critical for restriction of FOXP3 expression to Tregs. We discover CRE and TF circuitry controlling FOXP3 expression and reveal evolution of mechanisms regulating a gene indispensable to immune homeostasis.
Highlights
Comprehensive CRISPR maps of CREs and TFs controlling FOXP3 in human Tregs and Tconvs
Key TFs that control FOXP3 directly occupy and regulate CREs forming TF-CRE circuits
A previously unknown negative CRE stringently restricts FOXP3 to Tregs in mice
openRxiv
Jennifer M. Umhoefer
Maya M. Arce
Sean Whalen
Rama Dajani
Laine Goudy
Sivakanthan Kasinathan
Julia A. Belk
Wenxi Zhang
Royce Zhou
Sanjana Subramanya
Rosmely Hernandez
Carinna Tran
Nikhita Kirthivasan
Jacob W. Freimer
Cody T. Mowery
Vinh Nguyen
Mineto Ota
Benjamin G. Gowen
Dimitre R. Simeonov
Gemma L. Curie
Zhongmei Li
Jacob E. Corn
Howard Y. Chang
Luke A. Gilbert
Ansuman T. Satpathy
Katherine S. Pollard
Alexander Marson
Title: Cis-Regulatory Element and Transcription Factor Circuitry Required for Cell-Type Specific Expression of FOXP3
Description:
SUMMARY
FOXP3 is a lineage-defining transcription factor (TF) for immune-suppressive regulatory T cells (Tregs).
While mice exclusively express FOXP3 in Tregs, humans also transiently express FOXP3 in stimulated conventional CD4+ T cells (Tconvs).
Mechanisms governing these distinct expression patterns remain unknown.
Here, we performed CRISPR screens tiling the
FOXP3
locus and targeting TFs in human Tregs and Tconvs to discover cis-regulatory elements (CREs) and trans-regulators of FOXP3.
Tconv FOXP3 expression depended on a subset of Treg CREs and Tconv-selective positive (TcNS+) and negative (TcNS-) CREs.
The CREs are occupied and regulated by TFs we identified as critical regulators of FOXP3.
Finally, mutagenesis of murine TcNS- revealed that it is critical for restriction of FOXP3 expression to Tregs.
We discover CRE and TF circuitry controlling FOXP3 expression and reveal evolution of mechanisms regulating a gene indispensable to immune homeostasis.
Highlights
Comprehensive CRISPR maps of CREs and TFs controlling FOXP3 in human Tregs and Tconvs
Key TFs that control FOXP3 directly occupy and regulate CREs forming TF-CRE circuits
A previously unknown negative CRE stringently restricts FOXP3 to Tregs in mice.
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