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Constructing and deconstructing GATA2-regulated cell fate programs to establish developmental trajectories

Stem and progenitor cell fate transitions constitute key decision points in organismal development that enable access to a developmental path or actively preclude others. Using the hematopoietic system, we analyzed the relative importance of cell fate–promoting mechanisms versus negating fate-suppre...

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Autores principales: Johnson, Kirby D., Conn, Daniel J., Shishkova, Evgenia, Katsumura, Koichi R., Liu, Peng, Shen, Siqi, Ranheim, Erik A., Kraus, Sean G., Wang, Weixin, Calvo, Katherine R., Hsu, Amy P., Holland, Steven M., Coon, Joshua J., Keles, Sunduz, Bresnick, Emery H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7596813/
https://www.ncbi.nlm.nih.gov/pubmed/32736380
http://dx.doi.org/10.1084/jem.20191526
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author Johnson, Kirby D.
Conn, Daniel J.
Shishkova, Evgenia
Katsumura, Koichi R.
Liu, Peng
Shen, Siqi
Ranheim, Erik A.
Kraus, Sean G.
Wang, Weixin
Calvo, Katherine R.
Hsu, Amy P.
Holland, Steven M.
Coon, Joshua J.
Keles, Sunduz
Bresnick, Emery H.
author_facet Johnson, Kirby D.
Conn, Daniel J.
Shishkova, Evgenia
Katsumura, Koichi R.
Liu, Peng
Shen, Siqi
Ranheim, Erik A.
Kraus, Sean G.
Wang, Weixin
Calvo, Katherine R.
Hsu, Amy P.
Holland, Steven M.
Coon, Joshua J.
Keles, Sunduz
Bresnick, Emery H.
author_sort Johnson, Kirby D.
collection PubMed
description Stem and progenitor cell fate transitions constitute key decision points in organismal development that enable access to a developmental path or actively preclude others. Using the hematopoietic system, we analyzed the relative importance of cell fate–promoting mechanisms versus negating fate-suppressing mechanisms to engineer progenitor cells with multilineage differentiation potential. Deletion of the murine Gata2−77 enhancer, with a human equivalent that causes leukemia, downregulates the transcription factor GATA2 and blocks progenitor differentiation into erythrocytes, megakaryocytes, basophils, and granulocytes, but not macrophages. Using multiomics and single-cell analyses, we demonstrated that the enhancer orchestrates a balance between pro- and anti-fate circuitry in single cells. By increasing GATA2 expression, the enhancer instigates a fate-promoting mechanism while abrogating an innate immunity–linked, fate-suppressing mechanism. During embryogenesis, the suppressing mechanism dominated in enhancer mutant progenitors, thus yielding progenitors with a predominant monocytic differentiation potential. Coordinating fate-promoting and -suppressing circuits therefore averts deconstruction of a multifate system into a monopotent system and maintains critical progenitor heterogeneity and functionality.
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spelling pubmed-75968132021-05-02 Constructing and deconstructing GATA2-regulated cell fate programs to establish developmental trajectories Johnson, Kirby D. Conn, Daniel J. Shishkova, Evgenia Katsumura, Koichi R. Liu, Peng Shen, Siqi Ranheim, Erik A. Kraus, Sean G. Wang, Weixin Calvo, Katherine R. Hsu, Amy P. Holland, Steven M. Coon, Joshua J. Keles, Sunduz Bresnick, Emery H. J Exp Med Article Stem and progenitor cell fate transitions constitute key decision points in organismal development that enable access to a developmental path or actively preclude others. Using the hematopoietic system, we analyzed the relative importance of cell fate–promoting mechanisms versus negating fate-suppressing mechanisms to engineer progenitor cells with multilineage differentiation potential. Deletion of the murine Gata2−77 enhancer, with a human equivalent that causes leukemia, downregulates the transcription factor GATA2 and blocks progenitor differentiation into erythrocytes, megakaryocytes, basophils, and granulocytes, but not macrophages. Using multiomics and single-cell analyses, we demonstrated that the enhancer orchestrates a balance between pro- and anti-fate circuitry in single cells. By increasing GATA2 expression, the enhancer instigates a fate-promoting mechanism while abrogating an innate immunity–linked, fate-suppressing mechanism. During embryogenesis, the suppressing mechanism dominated in enhancer mutant progenitors, thus yielding progenitors with a predominant monocytic differentiation potential. Coordinating fate-promoting and -suppressing circuits therefore averts deconstruction of a multifate system into a monopotent system and maintains critical progenitor heterogeneity and functionality. Rockefeller University Press 2020-07-31 /pmc/articles/PMC7596813/ /pubmed/32736380 http://dx.doi.org/10.1084/jem.20191526 Text en © 2020 Johnson et al. http://www.rupress.org/terms/https://creativecommons.org/licenses/by-nc-sa/4.0/This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms/). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 International license, as described at https://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Johnson, Kirby D.
Conn, Daniel J.
Shishkova, Evgenia
Katsumura, Koichi R.
Liu, Peng
Shen, Siqi
Ranheim, Erik A.
Kraus, Sean G.
Wang, Weixin
Calvo, Katherine R.
Hsu, Amy P.
Holland, Steven M.
Coon, Joshua J.
Keles, Sunduz
Bresnick, Emery H.
Constructing and deconstructing GATA2-regulated cell fate programs to establish developmental trajectories
title Constructing and deconstructing GATA2-regulated cell fate programs to establish developmental trajectories
title_full Constructing and deconstructing GATA2-regulated cell fate programs to establish developmental trajectories
title_fullStr Constructing and deconstructing GATA2-regulated cell fate programs to establish developmental trajectories
title_full_unstemmed Constructing and deconstructing GATA2-regulated cell fate programs to establish developmental trajectories
title_short Constructing and deconstructing GATA2-regulated cell fate programs to establish developmental trajectories
title_sort constructing and deconstructing gata2-regulated cell fate programs to establish developmental trajectories
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7596813/
https://www.ncbi.nlm.nih.gov/pubmed/32736380
http://dx.doi.org/10.1084/jem.20191526
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