Cargando…

CITED1 confers stemness to Wilms tumor and enhances tumorigenic responses when enriched in the nucleus

Wilms tumor (WT) is the most common childhood kidney cancer and retains gene expression profiles reminiscent of the embryonic kidney. We have shown previously that CITED1, a transcriptional regulator that labels the self-renewing, multipotent nephron progenitor population of the developing kidney, i...

Descripción completa

Detalles Bibliográficos
Autores principales: Murphy, Andrew J., Pierce, Janene, de Caestecker, Christian, Ayers, Gregory D., Zhao, Alex, Correa, Hernan, Krebs, Jonathan R., Saito-Diaz, Vincente Kenyi, Lee, Ethan, Perantoni, Alan O., de Caestecker, Mark P., Lovvorn, Harold N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3964215/
https://www.ncbi.nlm.nih.gov/pubmed/24481423
_version_ 1782308605563764736
author Murphy, Andrew J.
Pierce, Janene
de Caestecker, Christian
Ayers, Gregory D.
Zhao, Alex
Correa, Hernan
Krebs, Jonathan R.
Saito-Diaz, Vincente Kenyi
Lee, Ethan
Perantoni, Alan O.
de Caestecker, Mark P.
Lovvorn, Harold N.
author_facet Murphy, Andrew J.
Pierce, Janene
de Caestecker, Christian
Ayers, Gregory D.
Zhao, Alex
Correa, Hernan
Krebs, Jonathan R.
Saito-Diaz, Vincente Kenyi
Lee, Ethan
Perantoni, Alan O.
de Caestecker, Mark P.
Lovvorn, Harold N.
author_sort Murphy, Andrew J.
collection PubMed
description Wilms tumor (WT) is the most common childhood kidney cancer and retains gene expression profiles reminiscent of the embryonic kidney. We have shown previously that CITED1, a transcriptional regulator that labels the self-renewing, multipotent nephron progenitor population of the developing kidney, is robustly expressed across all major WT disease and patient characteristics. In this malignant context, CITED1 becomes enriched in the nucleus, which deviates from its cytosolic predominance in embryonic nephron progenitors. We designed the current studies to test the functional and mechanistic effects of differential CITED1 subcellular localization on WT behavior. To mimic its subcellular distribution observed in clinical WT specimens, CITED1 was misexpressed ectopically in the human WT cell line, WiT49, as either a wild-type (predominantly cytosolic) or a mutant, but transcriptionally active, protein (two point mutations in its nuclear export signal, CITED1ΔNES; nuclear-enriched). In vitro analyses showed that CITED1ΔNES enhanced WiT49 proliferation and colony formation in soft agar relative to wild-type CITED1 and empty vector controls. The nuclear-enriched CITED1ΔNES cell line showed the greatest tumor volumes after xenotransplantation into immunodeficient mice (n=15 animals per cell line). To elucidate CITED1 gene targets in this model, microarray profiling showed that wildtype CITED1 foremost upregulated LGR5 (stem cell marker), repressed CDH6 (early marker of epithelial commitment of nephron progenitors), and altered expression of specific WNT pathway participants. In summary, forced nuclear enrichment of CITED1 in a human WT cell line appears to enhance tumorigenicity, whereas ectopic cytosolic expression confers stem-like properties and an embryonic phenotype, analogous to the developmental context.
format Online
Article
Text
id pubmed-3964215
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-39642152014-03-25 CITED1 confers stemness to Wilms tumor and enhances tumorigenic responses when enriched in the nucleus Murphy, Andrew J. Pierce, Janene de Caestecker, Christian Ayers, Gregory D. Zhao, Alex Correa, Hernan Krebs, Jonathan R. Saito-Diaz, Vincente Kenyi Lee, Ethan Perantoni, Alan O. de Caestecker, Mark P. Lovvorn, Harold N. Oncotarget Research Paper Wilms tumor (WT) is the most common childhood kidney cancer and retains gene expression profiles reminiscent of the embryonic kidney. We have shown previously that CITED1, a transcriptional regulator that labels the self-renewing, multipotent nephron progenitor population of the developing kidney, is robustly expressed across all major WT disease and patient characteristics. In this malignant context, CITED1 becomes enriched in the nucleus, which deviates from its cytosolic predominance in embryonic nephron progenitors. We designed the current studies to test the functional and mechanistic effects of differential CITED1 subcellular localization on WT behavior. To mimic its subcellular distribution observed in clinical WT specimens, CITED1 was misexpressed ectopically in the human WT cell line, WiT49, as either a wild-type (predominantly cytosolic) or a mutant, but transcriptionally active, protein (two point mutations in its nuclear export signal, CITED1ΔNES; nuclear-enriched). In vitro analyses showed that CITED1ΔNES enhanced WiT49 proliferation and colony formation in soft agar relative to wild-type CITED1 and empty vector controls. The nuclear-enriched CITED1ΔNES cell line showed the greatest tumor volumes after xenotransplantation into immunodeficient mice (n=15 animals per cell line). To elucidate CITED1 gene targets in this model, microarray profiling showed that wildtype CITED1 foremost upregulated LGR5 (stem cell marker), repressed CDH6 (early marker of epithelial commitment of nephron progenitors), and altered expression of specific WNT pathway participants. In summary, forced nuclear enrichment of CITED1 in a human WT cell line appears to enhance tumorigenicity, whereas ectopic cytosolic expression confers stem-like properties and an embryonic phenotype, analogous to the developmental context. Impact Journals LLC 2013-12-28 /pmc/articles/PMC3964215/ /pubmed/24481423 Text en Copyright: © 2014 Murphy et al. http://creativecommons.org/licenses/by/2.5/ 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 Research Paper
Murphy, Andrew J.
Pierce, Janene
de Caestecker, Christian
Ayers, Gregory D.
Zhao, Alex
Correa, Hernan
Krebs, Jonathan R.
Saito-Diaz, Vincente Kenyi
Lee, Ethan
Perantoni, Alan O.
de Caestecker, Mark P.
Lovvorn, Harold N.
CITED1 confers stemness to Wilms tumor and enhances tumorigenic responses when enriched in the nucleus
title CITED1 confers stemness to Wilms tumor and enhances tumorigenic responses when enriched in the nucleus
title_full CITED1 confers stemness to Wilms tumor and enhances tumorigenic responses when enriched in the nucleus
title_fullStr CITED1 confers stemness to Wilms tumor and enhances tumorigenic responses when enriched in the nucleus
title_full_unstemmed CITED1 confers stemness to Wilms tumor and enhances tumorigenic responses when enriched in the nucleus
title_short CITED1 confers stemness to Wilms tumor and enhances tumorigenic responses when enriched in the nucleus
title_sort cited1 confers stemness to wilms tumor and enhances tumorigenic responses when enriched in the nucleus
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3964215/
https://www.ncbi.nlm.nih.gov/pubmed/24481423
work_keys_str_mv AT murphyandrewj cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT piercejanene cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT decaesteckerchristian cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT ayersgregoryd cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT zhaoalex cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT correahernan cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT krebsjonathanr cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT saitodiazvincentekenyi cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT leeethan cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT perantonialano cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT decaesteckermarkp cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus
AT lovvornharoldn cited1confersstemnesstowilmstumorandenhancestumorigenicresponseswhenenrichedinthenucleus