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HOXA1 and TALE proteins display cross-regulatory interactions and form a combinatorial binding code on HOXA1 targets

Hoxa1 has diverse functional roles in differentiation and development. We identify and characterize properties of regions bound by HOXA1 on a genome-wide basis in differentiating mouse ES cells. HOXA1-bound regions are enriched for clusters of consensus binding motifs for HOX, PBX, and MEIS, and man...

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Autores principales: De Kumar, Bony, Parker, Hugo J., Paulson, Ariel, Parrish, Mark E., Pushel, Irina, Singh, Narendra Pratap, Zhang, Ying, Slaughter, Brian D., Unruh, Jay R., Florens, Laurence, Zeitlinger, Julia, Krumlauf, Robb
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5580710/
https://www.ncbi.nlm.nih.gov/pubmed/28784834
http://dx.doi.org/10.1101/gr.219386.116
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author De Kumar, Bony
Parker, Hugo J.
Paulson, Ariel
Parrish, Mark E.
Pushel, Irina
Singh, Narendra Pratap
Zhang, Ying
Slaughter, Brian D.
Unruh, Jay R.
Florens, Laurence
Zeitlinger, Julia
Krumlauf, Robb
author_facet De Kumar, Bony
Parker, Hugo J.
Paulson, Ariel
Parrish, Mark E.
Pushel, Irina
Singh, Narendra Pratap
Zhang, Ying
Slaughter, Brian D.
Unruh, Jay R.
Florens, Laurence
Zeitlinger, Julia
Krumlauf, Robb
author_sort De Kumar, Bony
collection PubMed
description Hoxa1 has diverse functional roles in differentiation and development. We identify and characterize properties of regions bound by HOXA1 on a genome-wide basis in differentiating mouse ES cells. HOXA1-bound regions are enriched for clusters of consensus binding motifs for HOX, PBX, and MEIS, and many display co-occupancy of PBX and MEIS. PBX and MEIS are members of the TALE family and genome-wide analysis of multiple TALE members (PBX, MEIS, TGIF, PREP1, and PREP2) shows that nearly all HOXA1 targets display occupancy of one or more TALE members. The combinatorial binding patterns of TALE proteins define distinct classes of HOXA1 targets, which may create functional diversity. Transgenic reporter assays in zebrafish confirm enhancer activities for many HOXA1-bound regions and the importance of HOX-PBX and TGIF motifs for their regulation. Proteomic analyses show that HOXA1 physically interacts on chromatin with PBX, MEIS, and PREP family members, but not with TGIF, suggesting that TGIF may have an independent input into HOXA1-bound regions. Therefore, TALE proteins appear to represent a wide repertoire of HOX cofactors, which may coregulate enhancers through distinct mechanisms. We also discover extensive auto- and cross-regulatory interactions among the Hoxa1 and TALE genes, indicating that the specificity of HOXA1 during development may be regulated though a complex cross-regulatory network of HOXA1 and TALE proteins. This study provides new insight into a regulatory network involving combinatorial interactions between HOXA1 and TALE proteins.
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spelling pubmed-55807102018-03-01 HOXA1 and TALE proteins display cross-regulatory interactions and form a combinatorial binding code on HOXA1 targets De Kumar, Bony Parker, Hugo J. Paulson, Ariel Parrish, Mark E. Pushel, Irina Singh, Narendra Pratap Zhang, Ying Slaughter, Brian D. Unruh, Jay R. Florens, Laurence Zeitlinger, Julia Krumlauf, Robb Genome Res Research Hoxa1 has diverse functional roles in differentiation and development. We identify and characterize properties of regions bound by HOXA1 on a genome-wide basis in differentiating mouse ES cells. HOXA1-bound regions are enriched for clusters of consensus binding motifs for HOX, PBX, and MEIS, and many display co-occupancy of PBX and MEIS. PBX and MEIS are members of the TALE family and genome-wide analysis of multiple TALE members (PBX, MEIS, TGIF, PREP1, and PREP2) shows that nearly all HOXA1 targets display occupancy of one or more TALE members. The combinatorial binding patterns of TALE proteins define distinct classes of HOXA1 targets, which may create functional diversity. Transgenic reporter assays in zebrafish confirm enhancer activities for many HOXA1-bound regions and the importance of HOX-PBX and TGIF motifs for their regulation. Proteomic analyses show that HOXA1 physically interacts on chromatin with PBX, MEIS, and PREP family members, but not with TGIF, suggesting that TGIF may have an independent input into HOXA1-bound regions. Therefore, TALE proteins appear to represent a wide repertoire of HOX cofactors, which may coregulate enhancers through distinct mechanisms. We also discover extensive auto- and cross-regulatory interactions among the Hoxa1 and TALE genes, indicating that the specificity of HOXA1 during development may be regulated though a complex cross-regulatory network of HOXA1 and TALE proteins. This study provides new insight into a regulatory network involving combinatorial interactions between HOXA1 and TALE proteins. Cold Spring Harbor Laboratory Press 2017-09 /pmc/articles/PMC5580710/ /pubmed/28784834 http://dx.doi.org/10.1101/gr.219386.116 Text en © 2017 De Kumar et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genome.cshlp.org/site/misc/terms.xhtml). After six months, it 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
De Kumar, Bony
Parker, Hugo J.
Paulson, Ariel
Parrish, Mark E.
Pushel, Irina
Singh, Narendra Pratap
Zhang, Ying
Slaughter, Brian D.
Unruh, Jay R.
Florens, Laurence
Zeitlinger, Julia
Krumlauf, Robb
HOXA1 and TALE proteins display cross-regulatory interactions and form a combinatorial binding code on HOXA1 targets
title HOXA1 and TALE proteins display cross-regulatory interactions and form a combinatorial binding code on HOXA1 targets
title_full HOXA1 and TALE proteins display cross-regulatory interactions and form a combinatorial binding code on HOXA1 targets
title_fullStr HOXA1 and TALE proteins display cross-regulatory interactions and form a combinatorial binding code on HOXA1 targets
title_full_unstemmed HOXA1 and TALE proteins display cross-regulatory interactions and form a combinatorial binding code on HOXA1 targets
title_short HOXA1 and TALE proteins display cross-regulatory interactions and form a combinatorial binding code on HOXA1 targets
title_sort hoxa1 and tale proteins display cross-regulatory interactions and form a combinatorial binding code on hoxa1 targets
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5580710/
https://www.ncbi.nlm.nih.gov/pubmed/28784834
http://dx.doi.org/10.1101/gr.219386.116
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