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Genome-wide transcription factor–binding maps reveal cell-specific changes in the regulatory architecture of human HSPCs

Hematopoietic stem and progenitor cells (HSPCs) rely on a complex interplay among transcription factors (TFs) to regulate differentiation into mature blood cells. A heptad of TFs (FLI1, ERG, GATA2, RUNX1, TAL1, LYL1, LMO2) bind regulatory elements in bulk CD34(+) HSPCs. However, whether specific hep...

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Autores principales: Subramanian, Shruthi, Thoms, Julie A. I., Huang, Yizhou, Cornejo-Páramo, Paola, Koch, Forrest C., Jacquelin, Sebastien, Shen, Sylvie, Song, Emma, Joshi, Swapna, Brownlee, Chris, Woll, Petter S., Chacon-Fajardo, Diego, Beck, Dominik, Curtis, David J., Yehson, Kenneth, Antonenas, Vicki, O'Brien, Tracey, Trickett, Annette, Powell, Jason A., Lewis, Ian D., Pitson, Stuart M., Gandhi, Maher K., Lane, Steven W., Vafaee, Fatemeh, Wong, Emily S., Göttgens, Berthold, Alinejad-Rokny, Hamid, Wong, Jason W. H., Pimanda, John E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The American Society of Hematology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10651876/
https://www.ncbi.nlm.nih.gov/pubmed/37595278
http://dx.doi.org/10.1182/blood.2023021120
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author Subramanian, Shruthi
Thoms, Julie A. I.
Huang, Yizhou
Cornejo-Páramo, Paola
Koch, Forrest C.
Jacquelin, Sebastien
Shen, Sylvie
Song, Emma
Joshi, Swapna
Brownlee, Chris
Woll, Petter S.
Chacon-Fajardo, Diego
Beck, Dominik
Curtis, David J.
Yehson, Kenneth
Antonenas, Vicki
O'Brien, Tracey
Trickett, Annette
Powell, Jason A.
Lewis, Ian D.
Pitson, Stuart M.
Gandhi, Maher K.
Lane, Steven W.
Vafaee, Fatemeh
Wong, Emily S.
Göttgens, Berthold
Alinejad-Rokny, Hamid
Wong, Jason W. H.
Pimanda, John E.
author_facet Subramanian, Shruthi
Thoms, Julie A. I.
Huang, Yizhou
Cornejo-Páramo, Paola
Koch, Forrest C.
Jacquelin, Sebastien
Shen, Sylvie
Song, Emma
Joshi, Swapna
Brownlee, Chris
Woll, Petter S.
Chacon-Fajardo, Diego
Beck, Dominik
Curtis, David J.
Yehson, Kenneth
Antonenas, Vicki
O'Brien, Tracey
Trickett, Annette
Powell, Jason A.
Lewis, Ian D.
Pitson, Stuart M.
Gandhi, Maher K.
Lane, Steven W.
Vafaee, Fatemeh
Wong, Emily S.
Göttgens, Berthold
Alinejad-Rokny, Hamid
Wong, Jason W. H.
Pimanda, John E.
author_sort Subramanian, Shruthi
collection PubMed
description Hematopoietic stem and progenitor cells (HSPCs) rely on a complex interplay among transcription factors (TFs) to regulate differentiation into mature blood cells. A heptad of TFs (FLI1, ERG, GATA2, RUNX1, TAL1, LYL1, LMO2) bind regulatory elements in bulk CD34(+) HSPCs. However, whether specific heptad-TF combinations have distinct roles in regulating hematopoietic differentiation remains unknown. We mapped genome-wide chromatin contacts (HiC, H3K27ac, HiChIP), chromatin modifications (H3K4me3, H3K27ac, H3K27me3) and 10 TF binding profiles (heptad, PU.1, CTCF, STAG2) in HSPC subsets (stem/multipotent progenitors plus common myeloid, granulocyte macrophage, and megakaryocyte erythrocyte progenitors) and found TF occupancy and enhancer-promoter interactions varied significantly across cell types and were associated with cell-type–specific gene expression. Distinct regulatory elements were enriched with specific heptad-TF combinations, including stem-cell–specific elements with ERG, and myeloid- and erythroid-specific elements with combinations of FLI1, RUNX1, GATA2, TAL1, LYL1, and LMO2. Furthermore, heptad-occupied regions in HSPCs were subsequently bound by lineage-defining TFs, including PU.1 and GATA1, suggesting that heptad factors may prime regulatory elements for use in mature cell types. We also found that enhancers with cell-type–specific heptad occupancy shared a common grammar with respect to TF binding motifs, suggesting that combinatorial binding of TF complexes was at least partially regulated by features encoded in DNA sequence motifs. Taken together, this study comprehensively characterizes the gene regulatory landscape in rare subpopulations of human HSPCs. The accompanying data sets should serve as a valuable resource for understanding adult hematopoiesis and a framework for analyzing aberrant regulatory networks in leukemic cells.
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spelling pubmed-106518762023-08-20 Genome-wide transcription factor–binding maps reveal cell-specific changes in the regulatory architecture of human HSPCs Subramanian, Shruthi Thoms, Julie A. I. Huang, Yizhou Cornejo-Páramo, Paola Koch, Forrest C. Jacquelin, Sebastien Shen, Sylvie Song, Emma Joshi, Swapna Brownlee, Chris Woll, Petter S. Chacon-Fajardo, Diego Beck, Dominik Curtis, David J. Yehson, Kenneth Antonenas, Vicki O'Brien, Tracey Trickett, Annette Powell, Jason A. Lewis, Ian D. Pitson, Stuart M. Gandhi, Maher K. Lane, Steven W. Vafaee, Fatemeh Wong, Emily S. Göttgens, Berthold Alinejad-Rokny, Hamid Wong, Jason W. H. Pimanda, John E. Blood Hematopoiesis and Stem Cells Hematopoietic stem and progenitor cells (HSPCs) rely on a complex interplay among transcription factors (TFs) to regulate differentiation into mature blood cells. A heptad of TFs (FLI1, ERG, GATA2, RUNX1, TAL1, LYL1, LMO2) bind regulatory elements in bulk CD34(+) HSPCs. However, whether specific heptad-TF combinations have distinct roles in regulating hematopoietic differentiation remains unknown. We mapped genome-wide chromatin contacts (HiC, H3K27ac, HiChIP), chromatin modifications (H3K4me3, H3K27ac, H3K27me3) and 10 TF binding profiles (heptad, PU.1, CTCF, STAG2) in HSPC subsets (stem/multipotent progenitors plus common myeloid, granulocyte macrophage, and megakaryocyte erythrocyte progenitors) and found TF occupancy and enhancer-promoter interactions varied significantly across cell types and were associated with cell-type–specific gene expression. Distinct regulatory elements were enriched with specific heptad-TF combinations, including stem-cell–specific elements with ERG, and myeloid- and erythroid-specific elements with combinations of FLI1, RUNX1, GATA2, TAL1, LYL1, and LMO2. Furthermore, heptad-occupied regions in HSPCs were subsequently bound by lineage-defining TFs, including PU.1 and GATA1, suggesting that heptad factors may prime regulatory elements for use in mature cell types. We also found that enhancers with cell-type–specific heptad occupancy shared a common grammar with respect to TF binding motifs, suggesting that combinatorial binding of TF complexes was at least partially regulated by features encoded in DNA sequence motifs. Taken together, this study comprehensively characterizes the gene regulatory landscape in rare subpopulations of human HSPCs. The accompanying data sets should serve as a valuable resource for understanding adult hematopoiesis and a framework for analyzing aberrant regulatory networks in leukemic cells. The American Society of Hematology 2023-10-26 2023-08-20 /pmc/articles/PMC10651876/ /pubmed/37595278 http://dx.doi.org/10.1182/blood.2023021120 Text en © 2023 by The American Society of Hematology. Licensed under Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0), permitting only noncommercial, nonderivative use with attribution. All other rights reserved. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Hematopoiesis and Stem Cells
Subramanian, Shruthi
Thoms, Julie A. I.
Huang, Yizhou
Cornejo-Páramo, Paola
Koch, Forrest C.
Jacquelin, Sebastien
Shen, Sylvie
Song, Emma
Joshi, Swapna
Brownlee, Chris
Woll, Petter S.
Chacon-Fajardo, Diego
Beck, Dominik
Curtis, David J.
Yehson, Kenneth
Antonenas, Vicki
O'Brien, Tracey
Trickett, Annette
Powell, Jason A.
Lewis, Ian D.
Pitson, Stuart M.
Gandhi, Maher K.
Lane, Steven W.
Vafaee, Fatemeh
Wong, Emily S.
Göttgens, Berthold
Alinejad-Rokny, Hamid
Wong, Jason W. H.
Pimanda, John E.
Genome-wide transcription factor–binding maps reveal cell-specific changes in the regulatory architecture of human HSPCs
title Genome-wide transcription factor–binding maps reveal cell-specific changes in the regulatory architecture of human HSPCs
title_full Genome-wide transcription factor–binding maps reveal cell-specific changes in the regulatory architecture of human HSPCs
title_fullStr Genome-wide transcription factor–binding maps reveal cell-specific changes in the regulatory architecture of human HSPCs
title_full_unstemmed Genome-wide transcription factor–binding maps reveal cell-specific changes in the regulatory architecture of human HSPCs
title_short Genome-wide transcription factor–binding maps reveal cell-specific changes in the regulatory architecture of human HSPCs
title_sort genome-wide transcription factor–binding maps reveal cell-specific changes in the regulatory architecture of human hspcs
topic Hematopoiesis and Stem Cells
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10651876/
https://www.ncbi.nlm.nih.gov/pubmed/37595278
http://dx.doi.org/10.1182/blood.2023021120
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