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The signal transducer CD24 suppresses the germ cell program and promotes an ectodermal rather than mesodermal cell fate in embryonal carcinomas

Testicular germ cell tumors (GCTs) are stratified into seminomas and nonseminomas. Seminomas share many histological and molecular features with primordial germ cells, whereas the nonseminoma stem cell population—embryonal carcinoma (EC)—is pluripotent and thus able to differentiate into cells of al...

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Autores principales: Skowron, Margaretha A., Becker, Teresa K., Kurz, Lukas, Jostes, Sina, Bremmer, Felix, Fronhoffs, Florian, Funke, Kai, Wakileh, Gamal A., Müller, Melanie R., Burmeister, Aaron, Lenz, Thomas, Stefanski, Anja, Stühler, Kai, Petzsch, Patrick, Köhrer, Karl, Altevogt, Peter, Albers, Peter, Kristiansen, Glen, Schorle, Hubert, Nettersheim, Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8847992/
https://www.ncbi.nlm.nih.gov/pubmed/34293822
http://dx.doi.org/10.1002/1878-0261.13066
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author Skowron, Margaretha A.
Becker, Teresa K.
Kurz, Lukas
Jostes, Sina
Bremmer, Felix
Fronhoffs, Florian
Funke, Kai
Wakileh, Gamal A.
Müller, Melanie R.
Burmeister, Aaron
Lenz, Thomas
Stefanski, Anja
Stühler, Kai
Petzsch, Patrick
Köhrer, Karl
Altevogt, Peter
Albers, Peter
Kristiansen, Glen
Schorle, Hubert
Nettersheim, Daniel
author_facet Skowron, Margaretha A.
Becker, Teresa K.
Kurz, Lukas
Jostes, Sina
Bremmer, Felix
Fronhoffs, Florian
Funke, Kai
Wakileh, Gamal A.
Müller, Melanie R.
Burmeister, Aaron
Lenz, Thomas
Stefanski, Anja
Stühler, Kai
Petzsch, Patrick
Köhrer, Karl
Altevogt, Peter
Albers, Peter
Kristiansen, Glen
Schorle, Hubert
Nettersheim, Daniel
author_sort Skowron, Margaretha A.
collection PubMed
description Testicular germ cell tumors (GCTs) are stratified into seminomas and nonseminomas. Seminomas share many histological and molecular features with primordial germ cells, whereas the nonseminoma stem cell population—embryonal carcinoma (EC)—is pluripotent and thus able to differentiate into cells of all three germ layers (teratomas). Furthermore, ECs are capable of differentiating into extra‐embryonic lineages (yolk sac tumors, choriocarcinomas). In this study, we deciphered the molecular and (epi)genetic mechanisms regulating expression of CD24, a highly glycosylated signaling molecule upregulated in many cancers. CD24 is overexpressed in ECs compared with other GCT entities and can be associated with an undifferentiated pluripotent cell fate. We demonstrate that CD24 can be transactivated by the pluripotency factor SOX2, which binds in proximity to the CD24 promoter. In GCTs, CD24 expression is controlled by epigenetic mechanisms, that is, histone acetylation, since CD24 can be induced by the application histone deacetylase inhibitors. Vice versa, CD24 expression is downregulated upon inhibition of histone methyltransferases, E3 ubiquitin ligases, or bromodomain (BRD) proteins. Additionally, three‐dimensional (3D) co‐cultivation of EC cells with microenvironmental cells, such as fibroblasts, and endothelial or immune cells, reduced CD24 expression, suggesting that crosstalk with the somatic microenvironment influences CD24 expression. In a CRISPR/Cas9 deficiency model, we demonstrate that CD24 fulfills a bivalent role in differentiation via regulation of homeobox, and phospho‐ and glycoproteins; that is, it is involved in suppressing the germ cell/spermatogenesis program and mesodermal/endodermal differentiation, while poising the cells for ectodermal differentiation. Finally, blocking CD24 by a monoclonal antibody enhanced sensitivity toward cisplatin in EC cells, including cisplatin‐resistant subclones, highlighting CD24 as a putative target in combination with cisplatin.
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spelling pubmed-88479922022-02-25 The signal transducer CD24 suppresses the germ cell program and promotes an ectodermal rather than mesodermal cell fate in embryonal carcinomas Skowron, Margaretha A. Becker, Teresa K. Kurz, Lukas Jostes, Sina Bremmer, Felix Fronhoffs, Florian Funke, Kai Wakileh, Gamal A. Müller, Melanie R. Burmeister, Aaron Lenz, Thomas Stefanski, Anja Stühler, Kai Petzsch, Patrick Köhrer, Karl Altevogt, Peter Albers, Peter Kristiansen, Glen Schorle, Hubert Nettersheim, Daniel Mol Oncol Research Articles Testicular germ cell tumors (GCTs) are stratified into seminomas and nonseminomas. Seminomas share many histological and molecular features with primordial germ cells, whereas the nonseminoma stem cell population—embryonal carcinoma (EC)—is pluripotent and thus able to differentiate into cells of all three germ layers (teratomas). Furthermore, ECs are capable of differentiating into extra‐embryonic lineages (yolk sac tumors, choriocarcinomas). In this study, we deciphered the molecular and (epi)genetic mechanisms regulating expression of CD24, a highly glycosylated signaling molecule upregulated in many cancers. CD24 is overexpressed in ECs compared with other GCT entities and can be associated with an undifferentiated pluripotent cell fate. We demonstrate that CD24 can be transactivated by the pluripotency factor SOX2, which binds in proximity to the CD24 promoter. In GCTs, CD24 expression is controlled by epigenetic mechanisms, that is, histone acetylation, since CD24 can be induced by the application histone deacetylase inhibitors. Vice versa, CD24 expression is downregulated upon inhibition of histone methyltransferases, E3 ubiquitin ligases, or bromodomain (BRD) proteins. Additionally, three‐dimensional (3D) co‐cultivation of EC cells with microenvironmental cells, such as fibroblasts, and endothelial or immune cells, reduced CD24 expression, suggesting that crosstalk with the somatic microenvironment influences CD24 expression. In a CRISPR/Cas9 deficiency model, we demonstrate that CD24 fulfills a bivalent role in differentiation via regulation of homeobox, and phospho‐ and glycoproteins; that is, it is involved in suppressing the germ cell/spermatogenesis program and mesodermal/endodermal differentiation, while poising the cells for ectodermal differentiation. Finally, blocking CD24 by a monoclonal antibody enhanced sensitivity toward cisplatin in EC cells, including cisplatin‐resistant subclones, highlighting CD24 as a putative target in combination with cisplatin. John Wiley and Sons Inc. 2021-08-02 2022-02 /pmc/articles/PMC8847992/ /pubmed/34293822 http://dx.doi.org/10.1002/1878-0261.13066 Text en © 2021 The Authors. Molecular Oncology published by John Wiley & Sons Ltd on behalf of Federation of European Biochemical Societies. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Skowron, Margaretha A.
Becker, Teresa K.
Kurz, Lukas
Jostes, Sina
Bremmer, Felix
Fronhoffs, Florian
Funke, Kai
Wakileh, Gamal A.
Müller, Melanie R.
Burmeister, Aaron
Lenz, Thomas
Stefanski, Anja
Stühler, Kai
Petzsch, Patrick
Köhrer, Karl
Altevogt, Peter
Albers, Peter
Kristiansen, Glen
Schorle, Hubert
Nettersheim, Daniel
The signal transducer CD24 suppresses the germ cell program and promotes an ectodermal rather than mesodermal cell fate in embryonal carcinomas
title The signal transducer CD24 suppresses the germ cell program and promotes an ectodermal rather than mesodermal cell fate in embryonal carcinomas
title_full The signal transducer CD24 suppresses the germ cell program and promotes an ectodermal rather than mesodermal cell fate in embryonal carcinomas
title_fullStr The signal transducer CD24 suppresses the germ cell program and promotes an ectodermal rather than mesodermal cell fate in embryonal carcinomas
title_full_unstemmed The signal transducer CD24 suppresses the germ cell program and promotes an ectodermal rather than mesodermal cell fate in embryonal carcinomas
title_short The signal transducer CD24 suppresses the germ cell program and promotes an ectodermal rather than mesodermal cell fate in embryonal carcinomas
title_sort signal transducer cd24 suppresses the germ cell program and promotes an ectodermal rather than mesodermal cell fate in embryonal carcinomas
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8847992/
https://www.ncbi.nlm.nih.gov/pubmed/34293822
http://dx.doi.org/10.1002/1878-0261.13066
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