Inositol pyrophosphates promote the interaction of SPX domains with the coiled-coil motif of PHR transcription factors to regulate plant phosphate homeostasis

Plants regulate phosphate homeostasis via the interaction of PHR transcription factors with SPX receptors bound to inositol pyrophosphate signaling molecules. Here the authors show that inositol pyrophosphate-bound SPX interacts with the coiled-coil domain of PHR, which regulates the oligomerization...

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Autores principales: Martina K. Ried, Rebekka Wild, Jinsheng Zhu, Joka Pipercevic, Kristina Sturm, Larissa Broger, Robert K. Harmel, Luciano A. Abriata, Ludwig A. Hothorn, Dorothea Fiedler, Sebastian Hiller, Michael Hothorn
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/00e29285b86d4975ada814bc3bd2fb9d
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spelling oai:doaj.org-article:00e29285b86d4975ada814bc3bd2fb9d2021-12-02T14:11:45ZInositol pyrophosphates promote the interaction of SPX domains with the coiled-coil motif of PHR transcription factors to regulate plant phosphate homeostasis10.1038/s41467-020-20681-42041-1723https://doaj.org/article/00e29285b86d4975ada814bc3bd2fb9d2021-01-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20681-4https://doaj.org/toc/2041-1723Plants regulate phosphate homeostasis via the interaction of PHR transcription factors with SPX receptors bound to inositol pyrophosphate signaling molecules. Here the authors show that inositol pyrophosphate-bound SPX interacts with the coiled-coil domain of PHR, which regulates the oligomerization and activity of the transcription factor.Martina K. RiedRebekka WildJinsheng ZhuJoka PipercevicKristina SturmLarissa BrogerRobert K. HarmelLuciano A. AbriataLudwig A. HothornDorothea FiedlerSebastian HillerMichael HothornNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-13 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Martina K. Ried
Rebekka Wild
Jinsheng Zhu
Joka Pipercevic
Kristina Sturm
Larissa Broger
Robert K. Harmel
Luciano A. Abriata
Ludwig A. Hothorn
Dorothea Fiedler
Sebastian Hiller
Michael Hothorn
Inositol pyrophosphates promote the interaction of SPX domains with the coiled-coil motif of PHR transcription factors to regulate plant phosphate homeostasis
description Plants regulate phosphate homeostasis via the interaction of PHR transcription factors with SPX receptors bound to inositol pyrophosphate signaling molecules. Here the authors show that inositol pyrophosphate-bound SPX interacts with the coiled-coil domain of PHR, which regulates the oligomerization and activity of the transcription factor.
format article
author Martina K. Ried
Rebekka Wild
Jinsheng Zhu
Joka Pipercevic
Kristina Sturm
Larissa Broger
Robert K. Harmel
Luciano A. Abriata
Ludwig A. Hothorn
Dorothea Fiedler
Sebastian Hiller
Michael Hothorn
author_facet Martina K. Ried
Rebekka Wild
Jinsheng Zhu
Joka Pipercevic
Kristina Sturm
Larissa Broger
Robert K. Harmel
Luciano A. Abriata
Ludwig A. Hothorn
Dorothea Fiedler
Sebastian Hiller
Michael Hothorn
author_sort Martina K. Ried
title Inositol pyrophosphates promote the interaction of SPX domains with the coiled-coil motif of PHR transcription factors to regulate plant phosphate homeostasis
title_short Inositol pyrophosphates promote the interaction of SPX domains with the coiled-coil motif of PHR transcription factors to regulate plant phosphate homeostasis
title_full Inositol pyrophosphates promote the interaction of SPX domains with the coiled-coil motif of PHR transcription factors to regulate plant phosphate homeostasis
title_fullStr Inositol pyrophosphates promote the interaction of SPX domains with the coiled-coil motif of PHR transcription factors to regulate plant phosphate homeostasis
title_full_unstemmed Inositol pyrophosphates promote the interaction of SPX domains with the coiled-coil motif of PHR transcription factors to regulate plant phosphate homeostasis
title_sort inositol pyrophosphates promote the interaction of spx domains with the coiled-coil motif of phr transcription factors to regulate plant phosphate homeostasis
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/00e29285b86d4975ada814bc3bd2fb9d
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