Cargando…

The embryonic type of SPP1 transcriptional regulation is re-activated in glioblastoma

Osteopontin (SPP1, a secreted phosphoprotein 1) is primarily involved in immune responses, tissue remodelling and biomineralization. However, it is also overexpressed in many cancers and regulates tumour progression by increasing migration, invasion and cancer stem cell self-renewal. Mechanisms of S...

Descripción completa

Detalles Bibliográficos
Autores principales: Kijewska, Magdalena, Kocyk, Marta, Kloss, Michal, Stepniak, Karolina, Korwek, Zbigniew, Polakowska, Renata, Dabrowski, Michal, Gieryng, Anna, Wojtas, Bartosz, Ciechomska, Iwona A, Kaminska, Bozena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5369967/
https://www.ncbi.nlm.nih.gov/pubmed/28030801
http://dx.doi.org/10.18632/oncotarget.14092
_version_ 1782518158301593600
author Kijewska, Magdalena
Kocyk, Marta
Kloss, Michal
Stepniak, Karolina
Korwek, Zbigniew
Polakowska, Renata
Dabrowski, Michal
Gieryng, Anna
Wojtas, Bartosz
Ciechomska, Iwona A
Kaminska, Bozena
author_facet Kijewska, Magdalena
Kocyk, Marta
Kloss, Michal
Stepniak, Karolina
Korwek, Zbigniew
Polakowska, Renata
Dabrowski, Michal
Gieryng, Anna
Wojtas, Bartosz
Ciechomska, Iwona A
Kaminska, Bozena
author_sort Kijewska, Magdalena
collection PubMed
description Osteopontin (SPP1, a secreted phosphoprotein 1) is primarily involved in immune responses, tissue remodelling and biomineralization. However, it is also overexpressed in many cancers and regulates tumour progression by increasing migration, invasion and cancer stem cell self-renewal. Mechanisms of SPP1 overexpression in gliomas are poorly understood. We demonstrate overexpression of two out of five SPP1 isoforms in glioblastoma (GBM) and differential isoform expression in glioma cell lines. Up-regulated SPP1 expression is associated with binding of the GLI1 transcription factor to the promoter and OCT4 (octamer-binding transcription factor 4) to the first SPP1 intron of the SPP1 gene in human glioma cells but not in non-transformed astrocytes. GLI1 knockdown reduced SPP1 mRNA and protein levels in glioma cells. GLI1 and OCT4 are known regulators of stem cell pluripotency. GBMs contain rare cells that express stem cell markers and display ability to self-renew. We reveal that SPP1 is overexpressed in glioma initiating cells defined by high rhodamine 123 efflux, sphere forming capacity and stemness marker expression. Forced differentiation of human glioma spheres reduced SPP1 expression. Knockdown of SPP1, GLI1 or CD44 with siRNAs diminished sphere formation. C6 glioma cells stably depleted of Spp1 displayed reduced sphere forming capacity and downregulated stemness marker expression. Overexpression of the wild type Spp1, but not Spp1 lacking a Cd44 binding domain, rescued cell ability to form spheres. Our findings show re-activation of the embryonic-type transcriptional regulation of SPP1 in malignant gliomas and point to the importance of SPP1-CD44 interactions in self-renewal and pluripotency glioma initiating cells.
format Online
Article
Text
id pubmed-5369967
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-53699672017-04-17 The embryonic type of SPP1 transcriptional regulation is re-activated in glioblastoma Kijewska, Magdalena Kocyk, Marta Kloss, Michal Stepniak, Karolina Korwek, Zbigniew Polakowska, Renata Dabrowski, Michal Gieryng, Anna Wojtas, Bartosz Ciechomska, Iwona A Kaminska, Bozena Oncotarget Research Paper Osteopontin (SPP1, a secreted phosphoprotein 1) is primarily involved in immune responses, tissue remodelling and biomineralization. However, it is also overexpressed in many cancers and regulates tumour progression by increasing migration, invasion and cancer stem cell self-renewal. Mechanisms of SPP1 overexpression in gliomas are poorly understood. We demonstrate overexpression of two out of five SPP1 isoforms in glioblastoma (GBM) and differential isoform expression in glioma cell lines. Up-regulated SPP1 expression is associated with binding of the GLI1 transcription factor to the promoter and OCT4 (octamer-binding transcription factor 4) to the first SPP1 intron of the SPP1 gene in human glioma cells but not in non-transformed astrocytes. GLI1 knockdown reduced SPP1 mRNA and protein levels in glioma cells. GLI1 and OCT4 are known regulators of stem cell pluripotency. GBMs contain rare cells that express stem cell markers and display ability to self-renew. We reveal that SPP1 is overexpressed in glioma initiating cells defined by high rhodamine 123 efflux, sphere forming capacity and stemness marker expression. Forced differentiation of human glioma spheres reduced SPP1 expression. Knockdown of SPP1, GLI1 or CD44 with siRNAs diminished sphere formation. C6 glioma cells stably depleted of Spp1 displayed reduced sphere forming capacity and downregulated stemness marker expression. Overexpression of the wild type Spp1, but not Spp1 lacking a Cd44 binding domain, rescued cell ability to form spheres. Our findings show re-activation of the embryonic-type transcriptional regulation of SPP1 in malignant gliomas and point to the importance of SPP1-CD44 interactions in self-renewal and pluripotency glioma initiating cells. Impact Journals LLC 2016-12-22 /pmc/articles/PMC5369967/ /pubmed/28030801 http://dx.doi.org/10.18632/oncotarget.14092 Text en Copyright: © 2017 Kijewska et al. http://creativecommons.org/licenses/by/3.0/ 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 credited.
spellingShingle Research Paper
Kijewska, Magdalena
Kocyk, Marta
Kloss, Michal
Stepniak, Karolina
Korwek, Zbigniew
Polakowska, Renata
Dabrowski, Michal
Gieryng, Anna
Wojtas, Bartosz
Ciechomska, Iwona A
Kaminska, Bozena
The embryonic type of SPP1 transcriptional regulation is re-activated in glioblastoma
title The embryonic type of SPP1 transcriptional regulation is re-activated in glioblastoma
title_full The embryonic type of SPP1 transcriptional regulation is re-activated in glioblastoma
title_fullStr The embryonic type of SPP1 transcriptional regulation is re-activated in glioblastoma
title_full_unstemmed The embryonic type of SPP1 transcriptional regulation is re-activated in glioblastoma
title_short The embryonic type of SPP1 transcriptional regulation is re-activated in glioblastoma
title_sort embryonic type of spp1 transcriptional regulation is re-activated in glioblastoma
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5369967/
https://www.ncbi.nlm.nih.gov/pubmed/28030801
http://dx.doi.org/10.18632/oncotarget.14092
work_keys_str_mv AT kijewskamagdalena theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT kocykmarta theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT klossmichal theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT stepniakkarolina theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT korwekzbigniew theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT polakowskarenata theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT dabrowskimichal theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT gierynganna theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT wojtasbartosz theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT ciechomskaiwonaa theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT kaminskabozena theembryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT kijewskamagdalena embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT kocykmarta embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT klossmichal embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT stepniakkarolina embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT korwekzbigniew embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT polakowskarenata embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT dabrowskimichal embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT gierynganna embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT wojtasbartosz embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT ciechomskaiwonaa embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma
AT kaminskabozena embryonictypeofspp1transcriptionalregulationisreactivatedinglioblastoma