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Regulating transcriptional activity by phosphorylation: A new mechanism for the ARX homeodomain transcription factor

Aristaless-related homeobox (ARX) gene encodes a paired-type homeodomain transcription factor with critical roles in development. Here we identify that ARX protein is phosphorylated. Using mass spectrometry and in vitro kinase assays we identify phosphorylation at serines 37, 67 and 174. Through yea...

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Autores principales: Mattiske, Tessa, Tan, May H., Dearsley, Oliver, Cloosterman, Desiree, Hii, Charles S., Gécz, Jozef, Shoubridge, Cheryl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6231642/
https://www.ncbi.nlm.nih.gov/pubmed/30419043
http://dx.doi.org/10.1371/journal.pone.0206914
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author Mattiske, Tessa
Tan, May H.
Dearsley, Oliver
Cloosterman, Desiree
Hii, Charles S.
Gécz, Jozef
Shoubridge, Cheryl
author_facet Mattiske, Tessa
Tan, May H.
Dearsley, Oliver
Cloosterman, Desiree
Hii, Charles S.
Gécz, Jozef
Shoubridge, Cheryl
author_sort Mattiske, Tessa
collection PubMed
description Aristaless-related homeobox (ARX) gene encodes a paired-type homeodomain transcription factor with critical roles in development. Here we identify that ARX protein is phosphorylated. Using mass spectrometry and in vitro kinase assays we identify phosphorylation at serines 37, 67 and 174. Through yeast-2-hybrid and CoIP we identified PICK1 (Protein interacting with C kinase 1) binding with the C-terminal region of ARX. PICK1 is a scaffold protein known to facilitate phosphorylation of protein partners by protein kinase C alpha (PRKCA). We confirm that ARX is phosphorylated by PRKCA and demonstrate phosphorylation at serine 174. We demonstrate that phosphorylation is required for correct transcriptional activity of the ARX protein using transcriptome-wide analysis of gene expression of phospho-null mutants (alanines replacing serines) compared to ARX wild-type (ARX-WT) overexpressed in pancreatic alpha TC cells. Compared to untransfected cells, ARX-WT overexpression significantly altered expression of 70 genes (Log2FC >+/-1.0, P-value <0.05). There were fewer genes with significantly altered expression compared to untransfected cells with the double phospho-null mutant Ser37Ala+Ser67Ala (26%) and Ser174Ala (39%), respectively. We demonstrate that the c-terminal region of ARX required to bind PICK1 causes a shift in PICK1 subcellular localisation to the nucleus to co-locate with the ARX protein, and truncation of this C-terminal region leads to the same loss of transcriptional activation as S174A mutant. In conclusion, we show that ARX is phosphorylated at several sites and that this modification affects its transcriptional activity.
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spelling pubmed-62316422018-11-19 Regulating transcriptional activity by phosphorylation: A new mechanism for the ARX homeodomain transcription factor Mattiske, Tessa Tan, May H. Dearsley, Oliver Cloosterman, Desiree Hii, Charles S. Gécz, Jozef Shoubridge, Cheryl PLoS One Research Article Aristaless-related homeobox (ARX) gene encodes a paired-type homeodomain transcription factor with critical roles in development. Here we identify that ARX protein is phosphorylated. Using mass spectrometry and in vitro kinase assays we identify phosphorylation at serines 37, 67 and 174. Through yeast-2-hybrid and CoIP we identified PICK1 (Protein interacting with C kinase 1) binding with the C-terminal region of ARX. PICK1 is a scaffold protein known to facilitate phosphorylation of protein partners by protein kinase C alpha (PRKCA). We confirm that ARX is phosphorylated by PRKCA and demonstrate phosphorylation at serine 174. We demonstrate that phosphorylation is required for correct transcriptional activity of the ARX protein using transcriptome-wide analysis of gene expression of phospho-null mutants (alanines replacing serines) compared to ARX wild-type (ARX-WT) overexpressed in pancreatic alpha TC cells. Compared to untransfected cells, ARX-WT overexpression significantly altered expression of 70 genes (Log2FC >+/-1.0, P-value <0.05). There were fewer genes with significantly altered expression compared to untransfected cells with the double phospho-null mutant Ser37Ala+Ser67Ala (26%) and Ser174Ala (39%), respectively. We demonstrate that the c-terminal region of ARX required to bind PICK1 causes a shift in PICK1 subcellular localisation to the nucleus to co-locate with the ARX protein, and truncation of this C-terminal region leads to the same loss of transcriptional activation as S174A mutant. In conclusion, we show that ARX is phosphorylated at several sites and that this modification affects its transcriptional activity. Public Library of Science 2018-11-12 /pmc/articles/PMC6231642/ /pubmed/30419043 http://dx.doi.org/10.1371/journal.pone.0206914 Text en © 2018 Mattiske et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Mattiske, Tessa
Tan, May H.
Dearsley, Oliver
Cloosterman, Desiree
Hii, Charles S.
Gécz, Jozef
Shoubridge, Cheryl
Regulating transcriptional activity by phosphorylation: A new mechanism for the ARX homeodomain transcription factor
title Regulating transcriptional activity by phosphorylation: A new mechanism for the ARX homeodomain transcription factor
title_full Regulating transcriptional activity by phosphorylation: A new mechanism for the ARX homeodomain transcription factor
title_fullStr Regulating transcriptional activity by phosphorylation: A new mechanism for the ARX homeodomain transcription factor
title_full_unstemmed Regulating transcriptional activity by phosphorylation: A new mechanism for the ARX homeodomain transcription factor
title_short Regulating transcriptional activity by phosphorylation: A new mechanism for the ARX homeodomain transcription factor
title_sort regulating transcriptional activity by phosphorylation: a new mechanism for the arx homeodomain transcription factor
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6231642/
https://www.ncbi.nlm.nih.gov/pubmed/30419043
http://dx.doi.org/10.1371/journal.pone.0206914
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