Cargando…

Sumoylated NHR-25/NR5A Regulates Cell Fate during C. elegans Vulval Development

Individual metazoan transcription factors (TFs) regulate distinct sets of genes depending on cell type and developmental or physiological context. The precise mechanisms by which regulatory information from ligands, genomic sequence elements, co-factors, and post-translational modifications are inte...

Descripción completa

Detalles Bibliográficos
Autores principales: Ward, Jordan D., Bojanala, Nagagireesh, Bernal, Teresita, Ashrafi, Kaveh, Asahina, Masako, Yamamoto, Keith R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3861103/
https://www.ncbi.nlm.nih.gov/pubmed/24348269
http://dx.doi.org/10.1371/journal.pgen.1003992
_version_ 1782295595345510400
author Ward, Jordan D.
Bojanala, Nagagireesh
Bernal, Teresita
Ashrafi, Kaveh
Asahina, Masako
Yamamoto, Keith R.
author_facet Ward, Jordan D.
Bojanala, Nagagireesh
Bernal, Teresita
Ashrafi, Kaveh
Asahina, Masako
Yamamoto, Keith R.
author_sort Ward, Jordan D.
collection PubMed
description Individual metazoan transcription factors (TFs) regulate distinct sets of genes depending on cell type and developmental or physiological context. The precise mechanisms by which regulatory information from ligands, genomic sequence elements, co-factors, and post-translational modifications are integrated by TFs remain challenging questions. Here, we examine how a single regulatory input, sumoylation, differentially modulates the activity of a conserved C. elegans nuclear hormone receptor, NHR-25, in different cell types. Through a combination of yeast two-hybrid analysis and in vitro biochemistry we identified the single C. elegans SUMO (SMO-1) as an NHR-25 interacting protein, and showed that NHR-25 is sumoylated on at least four lysines. Some of the sumoylation acceptor sites are in common with those of the NHR-25 mammalian orthologs SF-1 and LRH-1, demonstrating that sumoylation has been strongly conserved within the NR5A family. We showed that NHR-25 bound canonical SF-1 binding sequences to regulate transcription, and that NHR-25 activity was enhanced in vivo upon loss of sumoylation. Knockdown of smo-1 mimicked NHR-25 overexpression with respect to maintenance of the 3° cell fate in vulval precursor cells (VPCs) during development. Importantly, however, overexpression of unsumoylatable alleles of NHR-25 revealed that NHR-25 sumoylation is critical for maintaining 3° cell fate. Moreover, SUMO also conferred formation of a developmental time-dependent NHR-25 concentration gradient across the VPCs. That is, accumulation of GFP-tagged NHR-25 was uniform across VPCs at the beginning of development, but as cells began dividing, a smo-1-dependent NHR-25 gradient formed with highest levels in 1° fated VPCs, intermediate levels in 2° fated VPCs, and low levels in 3° fated VPCs. We conclude that sumoylation operates at multiple levels to affect NHR-25 activity in a highly coordinated spatial and temporal manner.
format Online
Article
Text
id pubmed-3861103
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-38611032013-12-17 Sumoylated NHR-25/NR5A Regulates Cell Fate during C. elegans Vulval Development Ward, Jordan D. Bojanala, Nagagireesh Bernal, Teresita Ashrafi, Kaveh Asahina, Masako Yamamoto, Keith R. PLoS Genet Research Article Individual metazoan transcription factors (TFs) regulate distinct sets of genes depending on cell type and developmental or physiological context. The precise mechanisms by which regulatory information from ligands, genomic sequence elements, co-factors, and post-translational modifications are integrated by TFs remain challenging questions. Here, we examine how a single regulatory input, sumoylation, differentially modulates the activity of a conserved C. elegans nuclear hormone receptor, NHR-25, in different cell types. Through a combination of yeast two-hybrid analysis and in vitro biochemistry we identified the single C. elegans SUMO (SMO-1) as an NHR-25 interacting protein, and showed that NHR-25 is sumoylated on at least four lysines. Some of the sumoylation acceptor sites are in common with those of the NHR-25 mammalian orthologs SF-1 and LRH-1, demonstrating that sumoylation has been strongly conserved within the NR5A family. We showed that NHR-25 bound canonical SF-1 binding sequences to regulate transcription, and that NHR-25 activity was enhanced in vivo upon loss of sumoylation. Knockdown of smo-1 mimicked NHR-25 overexpression with respect to maintenance of the 3° cell fate in vulval precursor cells (VPCs) during development. Importantly, however, overexpression of unsumoylatable alleles of NHR-25 revealed that NHR-25 sumoylation is critical for maintaining 3° cell fate. Moreover, SUMO also conferred formation of a developmental time-dependent NHR-25 concentration gradient across the VPCs. That is, accumulation of GFP-tagged NHR-25 was uniform across VPCs at the beginning of development, but as cells began dividing, a smo-1-dependent NHR-25 gradient formed with highest levels in 1° fated VPCs, intermediate levels in 2° fated VPCs, and low levels in 3° fated VPCs. We conclude that sumoylation operates at multiple levels to affect NHR-25 activity in a highly coordinated spatial and temporal manner. Public Library of Science 2013-12-12 /pmc/articles/PMC3861103/ /pubmed/24348269 http://dx.doi.org/10.1371/journal.pgen.1003992 Text en © 2013 Ward 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Ward, Jordan D.
Bojanala, Nagagireesh
Bernal, Teresita
Ashrafi, Kaveh
Asahina, Masako
Yamamoto, Keith R.
Sumoylated NHR-25/NR5A Regulates Cell Fate during C. elegans Vulval Development
title Sumoylated NHR-25/NR5A Regulates Cell Fate during C. elegans Vulval Development
title_full Sumoylated NHR-25/NR5A Regulates Cell Fate during C. elegans Vulval Development
title_fullStr Sumoylated NHR-25/NR5A Regulates Cell Fate during C. elegans Vulval Development
title_full_unstemmed Sumoylated NHR-25/NR5A Regulates Cell Fate during C. elegans Vulval Development
title_short Sumoylated NHR-25/NR5A Regulates Cell Fate during C. elegans Vulval Development
title_sort sumoylated nhr-25/nr5a regulates cell fate during c. elegans vulval development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3861103/
https://www.ncbi.nlm.nih.gov/pubmed/24348269
http://dx.doi.org/10.1371/journal.pgen.1003992
work_keys_str_mv AT wardjordand sumoylatednhr25nr5aregulatescellfateduringcelegansvulvaldevelopment
AT bojanalanagagireesh sumoylatednhr25nr5aregulatescellfateduringcelegansvulvaldevelopment
AT bernalteresita sumoylatednhr25nr5aregulatescellfateduringcelegansvulvaldevelopment
AT ashrafikaveh sumoylatednhr25nr5aregulatescellfateduringcelegansvulvaldevelopment
AT asahinamasako sumoylatednhr25nr5aregulatescellfateduringcelegansvulvaldevelopment
AT yamamotokeithr sumoylatednhr25nr5aregulatescellfateduringcelegansvulvaldevelopment