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AP-1 subunits converge promiscuously at enhancers to potentiate transcription

The AP-1 transcription factor (TF) dimer contributes to many biological processes and environmental responses. AP-1 can be composed of many interchangeable subunits. Unambiguously determining the binding locations of these subunits in the human genome is challenging because of variable antibody spec...

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Autores principales: Seo, Jungkyun, Koçak, D. Dewran, Bartelt, Luke C., Williams, Courtney A., Barrera, Alejandro, Gersbach, Charles A., Reddy, Timothy E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8015846/
https://www.ncbi.nlm.nih.gov/pubmed/33674350
http://dx.doi.org/10.1101/gr.267898.120
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author Seo, Jungkyun
Koçak, D. Dewran
Bartelt, Luke C.
Williams, Courtney A.
Barrera, Alejandro
Gersbach, Charles A.
Reddy, Timothy E.
author_facet Seo, Jungkyun
Koçak, D. Dewran
Bartelt, Luke C.
Williams, Courtney A.
Barrera, Alejandro
Gersbach, Charles A.
Reddy, Timothy E.
author_sort Seo, Jungkyun
collection PubMed
description The AP-1 transcription factor (TF) dimer contributes to many biological processes and environmental responses. AP-1 can be composed of many interchangeable subunits. Unambiguously determining the binding locations of these subunits in the human genome is challenging because of variable antibody specificity and affinity. Here, we definitively establish the genome-wide binding patterns of five AP-1 subunits by using CRISPR to introduce a common antibody tag on each subunit. We find limited evidence for strong dimerization preferences between subunits at steady state and find that, under a stimulus, dimerization patterns reflect changes in the transcriptome. Further, our analysis suggests that canonical AP-1 motifs indiscriminately recruit all AP-1 subunits to genomic sites, which we term AP-1 hotspots. We find that AP-1 hotspots are predictive of cell type–specific gene expression and of genomic responses to glucocorticoid signaling (more so than super-enhancers) and are significantly enriched in disease-associated genetic variants. Together, these results support a model where promiscuous binding of many AP-1 subunits to the same genomic location play a key role in regulating cell type–specific gene expression and environmental responses.
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spelling pubmed-80158462021-04-21 AP-1 subunits converge promiscuously at enhancers to potentiate transcription Seo, Jungkyun Koçak, D. Dewran Bartelt, Luke C. Williams, Courtney A. Barrera, Alejandro Gersbach, Charles A. Reddy, Timothy E. Genome Res Research The AP-1 transcription factor (TF) dimer contributes to many biological processes and environmental responses. AP-1 can be composed of many interchangeable subunits. Unambiguously determining the binding locations of these subunits in the human genome is challenging because of variable antibody specificity and affinity. Here, we definitively establish the genome-wide binding patterns of five AP-1 subunits by using CRISPR to introduce a common antibody tag on each subunit. We find limited evidence for strong dimerization preferences between subunits at steady state and find that, under a stimulus, dimerization patterns reflect changes in the transcriptome. Further, our analysis suggests that canonical AP-1 motifs indiscriminately recruit all AP-1 subunits to genomic sites, which we term AP-1 hotspots. We find that AP-1 hotspots are predictive of cell type–specific gene expression and of genomic responses to glucocorticoid signaling (more so than super-enhancers) and are significantly enriched in disease-associated genetic variants. Together, these results support a model where promiscuous binding of many AP-1 subunits to the same genomic location play a key role in regulating cell type–specific gene expression and environmental responses. Cold Spring Harbor Laboratory Press 2021-04 /pmc/articles/PMC8015846/ /pubmed/33674350 http://dx.doi.org/10.1101/gr.267898.120 Text en © 2021 Seo et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article, published in Genome Research, is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research
Seo, Jungkyun
Koçak, D. Dewran
Bartelt, Luke C.
Williams, Courtney A.
Barrera, Alejandro
Gersbach, Charles A.
Reddy, Timothy E.
AP-1 subunits converge promiscuously at enhancers to potentiate transcription
title AP-1 subunits converge promiscuously at enhancers to potentiate transcription
title_full AP-1 subunits converge promiscuously at enhancers to potentiate transcription
title_fullStr AP-1 subunits converge promiscuously at enhancers to potentiate transcription
title_full_unstemmed AP-1 subunits converge promiscuously at enhancers to potentiate transcription
title_short AP-1 subunits converge promiscuously at enhancers to potentiate transcription
title_sort ap-1 subunits converge promiscuously at enhancers to potentiate transcription
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8015846/
https://www.ncbi.nlm.nih.gov/pubmed/33674350
http://dx.doi.org/10.1101/gr.267898.120
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