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Tbx5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development

The gene regulatory networks that coordinate the development of the cardiac and pulmonary systems are essential for terrestrial life but poorly understood. The T-box transcription factor Tbx5 is critical for both pulmonary specification and heart development, but how these activities are mechanistic...

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Autores principales: Rankin, Scott A, Steimle, Jeffrey D, Yang, Xinan H, Rydeen, Ariel B, Agarwal, Kunal, Chaturvedi, Praneet, Ikegami, Kohta, Herriges, Michael J, Moskowitz, Ivan P, Zorn, Aaron M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8555986/
https://www.ncbi.nlm.nih.gov/pubmed/34643182
http://dx.doi.org/10.7554/eLife.69288
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author Rankin, Scott A
Steimle, Jeffrey D
Yang, Xinan H
Rydeen, Ariel B
Agarwal, Kunal
Chaturvedi, Praneet
Ikegami, Kohta
Herriges, Michael J
Moskowitz, Ivan P
Zorn, Aaron M
author_facet Rankin, Scott A
Steimle, Jeffrey D
Yang, Xinan H
Rydeen, Ariel B
Agarwal, Kunal
Chaturvedi, Praneet
Ikegami, Kohta
Herriges, Michael J
Moskowitz, Ivan P
Zorn, Aaron M
author_sort Rankin, Scott A
collection PubMed
description The gene regulatory networks that coordinate the development of the cardiac and pulmonary systems are essential for terrestrial life but poorly understood. The T-box transcription factor Tbx5 is critical for both pulmonary specification and heart development, but how these activities are mechanistically integrated remains unclear. Here using Xenopus and mouse embryos, we establish molecular links between Tbx5 and retinoic acid (RA) signaling in the mesoderm and between RA signaling and sonic hedgehog expression in the endoderm to unveil a conserved RA-Hedgehog-Wnt signaling cascade coordinating cardiopulmonary (CP) development. We demonstrate that Tbx5 directly maintains expression of aldh1a2, the RA-synthesizing enzyme, in the foregut lateral plate mesoderm via an evolutionarily conserved intronic enhancer. Tbx5 promotes posterior second heart field identity in a positive feedback loop with RA, antagonizing a Fgf8-Cyp regulatory module to restrict FGF activity to the anterior. We find that Tbx5/Aldh1a2-dependent RA signaling directly activates shh transcription in the adjacent foregut endoderm through a conserved MACS1 enhancer. Hedgehog signaling coordinates with Tbx5 in the mesoderm to activate expression of wnt2/2b, which induces pulmonary fate in the foregut endoderm. These results provide mechanistic insight into the interrelationship between heart and lung development informing CP evolution and birth defects.
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spelling pubmed-85559862021-11-01 Tbx5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development Rankin, Scott A Steimle, Jeffrey D Yang, Xinan H Rydeen, Ariel B Agarwal, Kunal Chaturvedi, Praneet Ikegami, Kohta Herriges, Michael J Moskowitz, Ivan P Zorn, Aaron M eLife Developmental Biology The gene regulatory networks that coordinate the development of the cardiac and pulmonary systems are essential for terrestrial life but poorly understood. The T-box transcription factor Tbx5 is critical for both pulmonary specification and heart development, but how these activities are mechanistically integrated remains unclear. Here using Xenopus and mouse embryos, we establish molecular links between Tbx5 and retinoic acid (RA) signaling in the mesoderm and between RA signaling and sonic hedgehog expression in the endoderm to unveil a conserved RA-Hedgehog-Wnt signaling cascade coordinating cardiopulmonary (CP) development. We demonstrate that Tbx5 directly maintains expression of aldh1a2, the RA-synthesizing enzyme, in the foregut lateral plate mesoderm via an evolutionarily conserved intronic enhancer. Tbx5 promotes posterior second heart field identity in a positive feedback loop with RA, antagonizing a Fgf8-Cyp regulatory module to restrict FGF activity to the anterior. We find that Tbx5/Aldh1a2-dependent RA signaling directly activates shh transcription in the adjacent foregut endoderm through a conserved MACS1 enhancer. Hedgehog signaling coordinates with Tbx5 in the mesoderm to activate expression of wnt2/2b, which induces pulmonary fate in the foregut endoderm. These results provide mechanistic insight into the interrelationship between heart and lung development informing CP evolution and birth defects. eLife Sciences Publications, Ltd 2021-10-13 /pmc/articles/PMC8555986/ /pubmed/34643182 http://dx.doi.org/10.7554/eLife.69288 Text en © 2021, Rankin et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Developmental Biology
Rankin, Scott A
Steimle, Jeffrey D
Yang, Xinan H
Rydeen, Ariel B
Agarwal, Kunal
Chaturvedi, Praneet
Ikegami, Kohta
Herriges, Michael J
Moskowitz, Ivan P
Zorn, Aaron M
Tbx5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development
title Tbx5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development
title_full Tbx5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development
title_fullStr Tbx5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development
title_full_unstemmed Tbx5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development
title_short Tbx5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development
title_sort tbx5 drives aldh1a2 expression to regulate a ra-hedgehog-wnt gene regulatory network coordinating cardiopulmonary development
topic Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8555986/
https://www.ncbi.nlm.nih.gov/pubmed/34643182
http://dx.doi.org/10.7554/eLife.69288
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