A SAM oligomerization domain shapes the genomic binding landscape of the LEAFY transcription factor

The LEAFY transcription factor is a master regulator of flower development in plants. Here the authors describe the structure of a LEAFY oligomerization domain and show that mutations that disrupt oligomerization alter its capacity to bind low affinity and poorly accessible target sites.

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Autores principales: Camille Sayou, Max H. Nanao, Marc Jamin, David Posé, Emmanuel Thévenon, Laura Grégoire, Gabrielle Tichtinsky, Grégoire Denay, Felix Ott, Marta Peirats Llobet, Markus Schmid, Renaud Dumas, François Parcy
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Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/96d83391804042f59f93135fd8d1bacb
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spelling oai:doaj.org-article:96d83391804042f59f93135fd8d1bacb2021-12-02T16:49:58ZA SAM oligomerization domain shapes the genomic binding landscape of the LEAFY transcription factor10.1038/ncomms112222041-1723https://doaj.org/article/96d83391804042f59f93135fd8d1bacb2016-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms11222https://doaj.org/toc/2041-1723The LEAFY transcription factor is a master regulator of flower development in plants. Here the authors describe the structure of a LEAFY oligomerization domain and show that mutations that disrupt oligomerization alter its capacity to bind low affinity and poorly accessible target sites.Camille SayouMax H. NanaoMarc JaminDavid PoséEmmanuel ThévenonLaura GrégoireGabrielle TichtinskyGrégoire DenayFelix OttMarta Peirats LlobetMarkus SchmidRenaud DumasFrançois ParcyNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-12 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Camille Sayou
Max H. Nanao
Marc Jamin
David Posé
Emmanuel Thévenon
Laura Grégoire
Gabrielle Tichtinsky
Grégoire Denay
Felix Ott
Marta Peirats Llobet
Markus Schmid
Renaud Dumas
François Parcy
A SAM oligomerization domain shapes the genomic binding landscape of the LEAFY transcription factor
description The LEAFY transcription factor is a master regulator of flower development in plants. Here the authors describe the structure of a LEAFY oligomerization domain and show that mutations that disrupt oligomerization alter its capacity to bind low affinity and poorly accessible target sites.
format article
author Camille Sayou
Max H. Nanao
Marc Jamin
David Posé
Emmanuel Thévenon
Laura Grégoire
Gabrielle Tichtinsky
Grégoire Denay
Felix Ott
Marta Peirats Llobet
Markus Schmid
Renaud Dumas
François Parcy
author_facet Camille Sayou
Max H. Nanao
Marc Jamin
David Posé
Emmanuel Thévenon
Laura Grégoire
Gabrielle Tichtinsky
Grégoire Denay
Felix Ott
Marta Peirats Llobet
Markus Schmid
Renaud Dumas
François Parcy
author_sort Camille Sayou
title A SAM oligomerization domain shapes the genomic binding landscape of the LEAFY transcription factor
title_short A SAM oligomerization domain shapes the genomic binding landscape of the LEAFY transcription factor
title_full A SAM oligomerization domain shapes the genomic binding landscape of the LEAFY transcription factor
title_fullStr A SAM oligomerization domain shapes the genomic binding landscape of the LEAFY transcription factor
title_full_unstemmed A SAM oligomerization domain shapes the genomic binding landscape of the LEAFY transcription factor
title_sort sam oligomerization domain shapes the genomic binding landscape of the leafy transcription factor
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/96d83391804042f59f93135fd8d1bacb
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