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Knockdown of UTX/KDM6A Enriches Precursor Cell Populations in Urothelial Cell Cultures and Cell Lines

The histone demethylase UTX (gene: KDM6A) directs cell and tissue differentiation during development. Deleterious mutations in KDM6A occur in many human cancers, most frequently in urothelial carcinoma. The consequences of these mutations are poorly understood; plausibly, they may disturb urothelial...

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Autores principales: Lang, Alexander, Whongsiri, Patcharawalai, Yilmaz, Merve, Lautwein, Tobias, Petzsch, Patrick, Greife, Annemarie, Günes, Cagatay, Köhrer, Karl, Niegisch, Günter, Hoffmann, Michèle, Schulz, Wolfgang A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226239/
https://www.ncbi.nlm.nih.gov/pubmed/32326336
http://dx.doi.org/10.3390/cancers12041023
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author Lang, Alexander
Whongsiri, Patcharawalai
Yilmaz, Merve
Lautwein, Tobias
Petzsch, Patrick
Greife, Annemarie
Günes, Cagatay
Köhrer, Karl
Niegisch, Günter
Hoffmann, Michèle
Schulz, Wolfgang A.
author_facet Lang, Alexander
Whongsiri, Patcharawalai
Yilmaz, Merve
Lautwein, Tobias
Petzsch, Patrick
Greife, Annemarie
Günes, Cagatay
Köhrer, Karl
Niegisch, Günter
Hoffmann, Michèle
Schulz, Wolfgang A.
author_sort Lang, Alexander
collection PubMed
description The histone demethylase UTX (gene: KDM6A) directs cell and tissue differentiation during development. Deleterious mutations in KDM6A occur in many human cancers, most frequently in urothelial carcinoma. The consequences of these mutations are poorly understood; plausibly, they may disturb urothelial differentiation. We therefore investigated the effects of UTX siRNA-mediated knockdown in two in vitro models of urothelial differentiation; namely, primary cultures of urothelial epithelial cells treated with troglitazone and PD153035 and the immortalized urothelial cell line HBLAK treated with high calcium and serum. In both models, efficient UTX knockdown did not block morphological and biochemical differentiation. An apparent delay was due to a cytotoxic effect on the cell cultures before the initiation of differentiation, which induced apoptosis partly in a p53-dependent manner. As a consequence, slowly cycling, smaller, KRT14(high) precursor cells in the HBLAK cell line were enriched at the expense of more differentiated, larger, proliferating KRT14(low) cells. UTX knockdown induced apoptosis and enriched KRT14(high) cells in the BFTC-905 papillary urothelial carcinoma cell line as well. Our findings suggest an explanation for the frequent occurrence of KDM6A mutations across all stages and molecular subtypes of urothelial carcinoma, whereby loss of UTX function does not primarily impede later stages of urothelial differentiation, but favors the expansion of precursor populations to provide a reservoir of potential tumor-initiating cells.
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spelling pubmed-72262392020-05-18 Knockdown of UTX/KDM6A Enriches Precursor Cell Populations in Urothelial Cell Cultures and Cell Lines Lang, Alexander Whongsiri, Patcharawalai Yilmaz, Merve Lautwein, Tobias Petzsch, Patrick Greife, Annemarie Günes, Cagatay Köhrer, Karl Niegisch, Günter Hoffmann, Michèle Schulz, Wolfgang A. Cancers (Basel) Article The histone demethylase UTX (gene: KDM6A) directs cell and tissue differentiation during development. Deleterious mutations in KDM6A occur in many human cancers, most frequently in urothelial carcinoma. The consequences of these mutations are poorly understood; plausibly, they may disturb urothelial differentiation. We therefore investigated the effects of UTX siRNA-mediated knockdown in two in vitro models of urothelial differentiation; namely, primary cultures of urothelial epithelial cells treated with troglitazone and PD153035 and the immortalized urothelial cell line HBLAK treated with high calcium and serum. In both models, efficient UTX knockdown did not block morphological and biochemical differentiation. An apparent delay was due to a cytotoxic effect on the cell cultures before the initiation of differentiation, which induced apoptosis partly in a p53-dependent manner. As a consequence, slowly cycling, smaller, KRT14(high) precursor cells in the HBLAK cell line were enriched at the expense of more differentiated, larger, proliferating KRT14(low) cells. UTX knockdown induced apoptosis and enriched KRT14(high) cells in the BFTC-905 papillary urothelial carcinoma cell line as well. Our findings suggest an explanation for the frequent occurrence of KDM6A mutations across all stages and molecular subtypes of urothelial carcinoma, whereby loss of UTX function does not primarily impede later stages of urothelial differentiation, but favors the expansion of precursor populations to provide a reservoir of potential tumor-initiating cells. MDPI 2020-04-21 /pmc/articles/PMC7226239/ /pubmed/32326336 http://dx.doi.org/10.3390/cancers12041023 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lang, Alexander
Whongsiri, Patcharawalai
Yilmaz, Merve
Lautwein, Tobias
Petzsch, Patrick
Greife, Annemarie
Günes, Cagatay
Köhrer, Karl
Niegisch, Günter
Hoffmann, Michèle
Schulz, Wolfgang A.
Knockdown of UTX/KDM6A Enriches Precursor Cell Populations in Urothelial Cell Cultures and Cell Lines
title Knockdown of UTX/KDM6A Enriches Precursor Cell Populations in Urothelial Cell Cultures and Cell Lines
title_full Knockdown of UTX/KDM6A Enriches Precursor Cell Populations in Urothelial Cell Cultures and Cell Lines
title_fullStr Knockdown of UTX/KDM6A Enriches Precursor Cell Populations in Urothelial Cell Cultures and Cell Lines
title_full_unstemmed Knockdown of UTX/KDM6A Enriches Precursor Cell Populations in Urothelial Cell Cultures and Cell Lines
title_short Knockdown of UTX/KDM6A Enriches Precursor Cell Populations in Urothelial Cell Cultures and Cell Lines
title_sort knockdown of utx/kdm6a enriches precursor cell populations in urothelial cell cultures and cell lines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7226239/
https://www.ncbi.nlm.nih.gov/pubmed/32326336
http://dx.doi.org/10.3390/cancers12041023
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