B1a and B2 cells are characterized by distinct CpG modification states at DNMT3A-maintained enhancers

B cell progenitors differentiate into multiple subsets with distinct functions. Here the authors analyze the epigenetic landscapes of sorted B cell subsets using multiple platforms and show that the epigenetic regulator, DNMT3A, is essential for modulating the activity of enhancers critical for B1 a...

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Main Authors: Vinay S. Mahajan, Hamid Mattoo, Na Sun, Vinayak Viswanadham, Grace J. Yuen, Hugues Allard-Chamard, Maimuna Ahmad, Samuel J. H. Murphy, Annaiah Cariappa, Yesim Tuncay, Shiv Pillai
Format: Article
Language:English
Published: Nature Publishing Group 2021-04-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-021-22458-9
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spelling doaj-3f5d4b4a728a40e5ad631b0536b74c492021-04-18T11:13:56ZengNature Publishing GroupNature Communications2041-17232021-04-0112111710.1038/s41467-021-22458-9B1a and B2 cells are characterized by distinct CpG modification states at DNMT3A-maintained enhancersVinay S. Mahajan0Hamid Mattoo1Na Sun2Vinayak Viswanadham3Grace J. Yuen4Hugues Allard-Chamard5Maimuna Ahmad6Samuel J. H. Murphy7Annaiah Cariappa8Yesim Tuncay9Shiv Pillai10Ragon Institute of MGH, MIT, and HarvardRagon Institute of MGH, MIT, and HarvardRagon Institute of MGH, MIT, and HarvardRagon Institute of MGH, MIT, and HarvardRagon Institute of MGH, MIT, and HarvardRagon Institute of MGH, MIT, and HarvardRagon Institute of MGH, MIT, and HarvardRagon Institute of MGH, MIT, and HarvardRagon Institute of MGH, MIT, and HarvardRagon Institute of MGH, MIT, and HarvardRagon Institute of MGH, MIT, and HarvardB cell progenitors differentiate into multiple subsets with distinct functions. Here the authors analyze the epigenetic landscapes of sorted B cell subsets using multiple platforms and show that the epigenetic regulator, DNMT3A, is essential for modulating the activity of enhancers critical for B1 and B2 lineage-determining genes.https://doi.org/10.1038/s41467-021-22458-9
collection DOAJ
language English
format Article
sources DOAJ
author Vinay S. Mahajan
Hamid Mattoo
Na Sun
Vinayak Viswanadham
Grace J. Yuen
Hugues Allard-Chamard
Maimuna Ahmad
Samuel J. H. Murphy
Annaiah Cariappa
Yesim Tuncay
Shiv Pillai
spellingShingle Vinay S. Mahajan
Hamid Mattoo
Na Sun
Vinayak Viswanadham
Grace J. Yuen
Hugues Allard-Chamard
Maimuna Ahmad
Samuel J. H. Murphy
Annaiah Cariappa
Yesim Tuncay
Shiv Pillai
B1a and B2 cells are characterized by distinct CpG modification states at DNMT3A-maintained enhancers
Nature Communications
author_facet Vinay S. Mahajan
Hamid Mattoo
Na Sun
Vinayak Viswanadham
Grace J. Yuen
Hugues Allard-Chamard
Maimuna Ahmad
Samuel J. H. Murphy
Annaiah Cariappa
Yesim Tuncay
Shiv Pillai
author_sort Vinay S. Mahajan
title B1a and B2 cells are characterized by distinct CpG modification states at DNMT3A-maintained enhancers
title_short B1a and B2 cells are characterized by distinct CpG modification states at DNMT3A-maintained enhancers
title_full B1a and B2 cells are characterized by distinct CpG modification states at DNMT3A-maintained enhancers
title_fullStr B1a and B2 cells are characterized by distinct CpG modification states at DNMT3A-maintained enhancers
title_full_unstemmed B1a and B2 cells are characterized by distinct CpG modification states at DNMT3A-maintained enhancers
title_sort b1a and b2 cells are characterized by distinct cpg modification states at dnmt3a-maintained enhancers
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2021-04-01
description B cell progenitors differentiate into multiple subsets with distinct functions. Here the authors analyze the epigenetic landscapes of sorted B cell subsets using multiple platforms and show that the epigenetic regulator, DNMT3A, is essential for modulating the activity of enhancers critical for B1 and B2 lineage-determining genes.
url https://doi.org/10.1038/s41467-021-22458-9
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