A reference map of murine cardiac transcription factor chromatin occupancy identifies dynamic and conserved enhancers
Mapping transcription factors (TFs) occupancy is essential for understanding transcriptional programs. Here the authors use biotinylated knockin alleles of key cardiac TFs (GATA4, NKX2-5, MEF2A, MEF2C, SRF, TBX5, TEAD1) to map their genome-wide occupancy in the fetal and adult mouse heart, providing...
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Nature Portfolio
2019
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oai:doaj.org-article:f91597d9ab8045b0bc0e2854890b31e12021-12-02T17:31:53ZA reference map of murine cardiac transcription factor chromatin occupancy identifies dynamic and conserved enhancers10.1038/s41467-019-12812-32041-1723https://doaj.org/article/f91597d9ab8045b0bc0e2854890b31e12019-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12812-3https://doaj.org/toc/2041-1723Mapping transcription factors (TFs) occupancy is essential for understanding transcriptional programs. Here the authors use biotinylated knockin alleles of key cardiac TFs (GATA4, NKX2-5, MEF2A, MEF2C, SRF, TBX5, TEAD1) to map their genome-wide occupancy in the fetal and adult mouse heart, providing insight into the cardiac transcriptional regulatory network.Brynn N. AkerbergFei GuNathan J. VanDusenXiaoran ZhangRui DongKai LiBing ZhangBin ZhouIsha SethiQing MaLauren WassonTong WenJinhua LiuKunzhe DongFrank L. ConlonJiliang ZhouGuo-Cheng YuanPingzhu ZhouWilliam T. PuNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-16 (2019) |
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Science Q Brynn N. Akerberg Fei Gu Nathan J. VanDusen Xiaoran Zhang Rui Dong Kai Li Bing Zhang Bin Zhou Isha Sethi Qing Ma Lauren Wasson Tong Wen Jinhua Liu Kunzhe Dong Frank L. Conlon Jiliang Zhou Guo-Cheng Yuan Pingzhu Zhou William T. Pu A reference map of murine cardiac transcription factor chromatin occupancy identifies dynamic and conserved enhancers |
description |
Mapping transcription factors (TFs) occupancy is essential for understanding transcriptional programs. Here the authors use biotinylated knockin alleles of key cardiac TFs (GATA4, NKX2-5, MEF2A, MEF2C, SRF, TBX5, TEAD1) to map their genome-wide occupancy in the fetal and adult mouse heart, providing insight into the cardiac transcriptional regulatory network. |
format |
article |
author |
Brynn N. Akerberg Fei Gu Nathan J. VanDusen Xiaoran Zhang Rui Dong Kai Li Bing Zhang Bin Zhou Isha Sethi Qing Ma Lauren Wasson Tong Wen Jinhua Liu Kunzhe Dong Frank L. Conlon Jiliang Zhou Guo-Cheng Yuan Pingzhu Zhou William T. Pu |
author_facet |
Brynn N. Akerberg Fei Gu Nathan J. VanDusen Xiaoran Zhang Rui Dong Kai Li Bing Zhang Bin Zhou Isha Sethi Qing Ma Lauren Wasson Tong Wen Jinhua Liu Kunzhe Dong Frank L. Conlon Jiliang Zhou Guo-Cheng Yuan Pingzhu Zhou William T. Pu |
author_sort |
Brynn N. Akerberg |
title |
A reference map of murine cardiac transcription factor chromatin occupancy identifies dynamic and conserved enhancers |
title_short |
A reference map of murine cardiac transcription factor chromatin occupancy identifies dynamic and conserved enhancers |
title_full |
A reference map of murine cardiac transcription factor chromatin occupancy identifies dynamic and conserved enhancers |
title_fullStr |
A reference map of murine cardiac transcription factor chromatin occupancy identifies dynamic and conserved enhancers |
title_full_unstemmed |
A reference map of murine cardiac transcription factor chromatin occupancy identifies dynamic and conserved enhancers |
title_sort |
reference map of murine cardiac transcription factor chromatin occupancy identifies dynamic and conserved enhancers |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/f91597d9ab8045b0bc0e2854890b31e1 |
work_keys_str_mv |
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