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FOXP1 Interacts with MyoD to Repress its Transcription and Myoblast Conversion

Forkhead transcription factors (TFs) often dimerize outside their extensive family, whereas bHLH transcription factors typically dimerize with E12/E47. Based on structural similarities, we predicted that a member of the former, Forkhead Box P1 (FOXP1), might heterodimerize with a member of the latte...

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Autores principales: Wright, Woodring E., Li, Chuan, Zheng, Chang-xue, Tucker, Haley O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7861563/
https://www.ncbi.nlm.nih.gov/pubmed/33554216
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author Wright, Woodring E.
Li, Chuan
Zheng, Chang-xue
Tucker, Haley O.
author_facet Wright, Woodring E.
Li, Chuan
Zheng, Chang-xue
Tucker, Haley O.
author_sort Wright, Woodring E.
collection PubMed
description Forkhead transcription factors (TFs) often dimerize outside their extensive family, whereas bHLH transcription factors typically dimerize with E12/E47. Based on structural similarities, we predicted that a member of the former, Forkhead Box P1 (FOXP1), might heterodimerize with a member of the latter, MYOD1 (MyoD). Data shown here support this hypothesis and further demonstrate the specificity of this forkhead/myogenic interaction among other myogenic regulatory factors. We found that FOXP1-MyoD heterodimerization compromises the ability of MyoD to bind to E-boxes and to transactivate E box- containing promoters. We observed that FOXP1 is required for the full ability of MyoD to convert fibroblasts into myotubules. We provide a model in which FOXP1 displaces ID and E12/E47 to repress MyoD during the proliferative phase of myoblast differentiation. These data identify FOXP1 as a hitherto unsuspected transcriptional repressor of MyoD. We suggest that isolation of paired E-box and forkhead sites within 1 turn helical spacings provides potential for cooperative interactions among heretofore distinct classes of transcription factors.
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spelling pubmed-78615632021-02-04 FOXP1 Interacts with MyoD to Repress its Transcription and Myoblast Conversion Wright, Woodring E. Li, Chuan Zheng, Chang-xue Tucker, Haley O. J Cell Signal Article Forkhead transcription factors (TFs) often dimerize outside their extensive family, whereas bHLH transcription factors typically dimerize with E12/E47. Based on structural similarities, we predicted that a member of the former, Forkhead Box P1 (FOXP1), might heterodimerize with a member of the latter, MYOD1 (MyoD). Data shown here support this hypothesis and further demonstrate the specificity of this forkhead/myogenic interaction among other myogenic regulatory factors. We found that FOXP1-MyoD heterodimerization compromises the ability of MyoD to bind to E-boxes and to transactivate E box- containing promoters. We observed that FOXP1 is required for the full ability of MyoD to convert fibroblasts into myotubules. We provide a model in which FOXP1 displaces ID and E12/E47 to repress MyoD during the proliferative phase of myoblast differentiation. These data identify FOXP1 as a hitherto unsuspected transcriptional repressor of MyoD. We suggest that isolation of paired E-box and forkhead sites within 1 turn helical spacings provides potential for cooperative interactions among heretofore distinct classes of transcription factors. 2021 /pmc/articles/PMC7861563/ /pubmed/33554216 Text en http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Article
Wright, Woodring E.
Li, Chuan
Zheng, Chang-xue
Tucker, Haley O.
FOXP1 Interacts with MyoD to Repress its Transcription and Myoblast Conversion
title FOXP1 Interacts with MyoD to Repress its Transcription and Myoblast Conversion
title_full FOXP1 Interacts with MyoD to Repress its Transcription and Myoblast Conversion
title_fullStr FOXP1 Interacts with MyoD to Repress its Transcription and Myoblast Conversion
title_full_unstemmed FOXP1 Interacts with MyoD to Repress its Transcription and Myoblast Conversion
title_short FOXP1 Interacts with MyoD to Repress its Transcription and Myoblast Conversion
title_sort foxp1 interacts with myod to repress its transcription and myoblast conversion
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7861563/
https://www.ncbi.nlm.nih.gov/pubmed/33554216
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