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Classification of a frameshift/extended and a stop mutation in WT1 as gain-of-function mutations that activate cell cycle genes and promote Wilms tumour cell proliferation

The WT1 gene encodes a zinc finger transcription factor important for normal kidney development. WT1 is a suppressor for Wilms tumour development and an oncogene for diverse malignant tumours. We recently established cell lines from primary Wilms tumours with different WT1 mutations. To investigate...

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Autores principales: Busch, Maike, Schwindt, Heinrich, Brandt, Artur, Beier, Manfred, Görldt, Nicole, Romaniuk, Paul, Toska, Eneda, Roberts, Stefan, Royer, Hans-Dieter, Royer-Pokora, Brigitte
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4082364/
https://www.ncbi.nlm.nih.gov/pubmed/24619359
http://dx.doi.org/10.1093/hmg/ddu111
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author Busch, Maike
Schwindt, Heinrich
Brandt, Artur
Beier, Manfred
Görldt, Nicole
Romaniuk, Paul
Toska, Eneda
Roberts, Stefan
Royer, Hans-Dieter
Royer-Pokora, Brigitte
author_facet Busch, Maike
Schwindt, Heinrich
Brandt, Artur
Beier, Manfred
Görldt, Nicole
Romaniuk, Paul
Toska, Eneda
Roberts, Stefan
Royer, Hans-Dieter
Royer-Pokora, Brigitte
author_sort Busch, Maike
collection PubMed
description The WT1 gene encodes a zinc finger transcription factor important for normal kidney development. WT1 is a suppressor for Wilms tumour development and an oncogene for diverse malignant tumours. We recently established cell lines from primary Wilms tumours with different WT1 mutations. To investigate the function of mutant WT1 proteins, we performed WT1 knockdown experiments in cell lines with a frameshift/extension (p.V432fsX87 = Wilms3) and a stop mutation (p.P362X = Wilms2) of WT1, followed by genome-wide gene expression analysis. We also expressed wild-type and mutant WT1 proteins in human mesenchymal stem cells and established gene expression profiles. A detailed analysis of gene expression data enabled us to classify the WT1 mutations as gain-of-function mutations. The mutant WT1(Wilms2) and WT1(Wilms3) proteins acquired an ability to modulate the expression of a highly significant number of genes from the G2/M phase of the cell cycle, and WT1 knockdown experiments showed that they are required for Wilms tumour cell proliferation. p53 negatively regulates the activity of a large number of these genes that are also part of a core proliferation cluster in diverse human cancers. Our data strongly suggest that mutant WT1 proteins facilitate expression of these cell cycle genes by antagonizing transcriptional repression mediated by p53. We show that mutant WT1 can physically interact with p53. Together the findings show for the first time that mutant WT1 proteins have a gain-of-function and act as oncogenes for Wilms tumour development by regulating Wilms tumour cell proliferation.
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spelling pubmed-40823642014-07-10 Classification of a frameshift/extended and a stop mutation in WT1 as gain-of-function mutations that activate cell cycle genes and promote Wilms tumour cell proliferation Busch, Maike Schwindt, Heinrich Brandt, Artur Beier, Manfred Görldt, Nicole Romaniuk, Paul Toska, Eneda Roberts, Stefan Royer, Hans-Dieter Royer-Pokora, Brigitte Hum Mol Genet Articles The WT1 gene encodes a zinc finger transcription factor important for normal kidney development. WT1 is a suppressor for Wilms tumour development and an oncogene for diverse malignant tumours. We recently established cell lines from primary Wilms tumours with different WT1 mutations. To investigate the function of mutant WT1 proteins, we performed WT1 knockdown experiments in cell lines with a frameshift/extension (p.V432fsX87 = Wilms3) and a stop mutation (p.P362X = Wilms2) of WT1, followed by genome-wide gene expression analysis. We also expressed wild-type and mutant WT1 proteins in human mesenchymal stem cells and established gene expression profiles. A detailed analysis of gene expression data enabled us to classify the WT1 mutations as gain-of-function mutations. The mutant WT1(Wilms2) and WT1(Wilms3) proteins acquired an ability to modulate the expression of a highly significant number of genes from the G2/M phase of the cell cycle, and WT1 knockdown experiments showed that they are required for Wilms tumour cell proliferation. p53 negatively regulates the activity of a large number of these genes that are also part of a core proliferation cluster in diverse human cancers. Our data strongly suggest that mutant WT1 proteins facilitate expression of these cell cycle genes by antagonizing transcriptional repression mediated by p53. We show that mutant WT1 can physically interact with p53. Together the findings show for the first time that mutant WT1 proteins have a gain-of-function and act as oncogenes for Wilms tumour development by regulating Wilms tumour cell proliferation. Oxford University Press 2014-08-01 2014-03-11 /pmc/articles/PMC4082364/ /pubmed/24619359 http://dx.doi.org/10.1093/hmg/ddu111 Text en © The Author 2014. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Articles
Busch, Maike
Schwindt, Heinrich
Brandt, Artur
Beier, Manfred
Görldt, Nicole
Romaniuk, Paul
Toska, Eneda
Roberts, Stefan
Royer, Hans-Dieter
Royer-Pokora, Brigitte
Classification of a frameshift/extended and a stop mutation in WT1 as gain-of-function mutations that activate cell cycle genes and promote Wilms tumour cell proliferation
title Classification of a frameshift/extended and a stop mutation in WT1 as gain-of-function mutations that activate cell cycle genes and promote Wilms tumour cell proliferation
title_full Classification of a frameshift/extended and a stop mutation in WT1 as gain-of-function mutations that activate cell cycle genes and promote Wilms tumour cell proliferation
title_fullStr Classification of a frameshift/extended and a stop mutation in WT1 as gain-of-function mutations that activate cell cycle genes and promote Wilms tumour cell proliferation
title_full_unstemmed Classification of a frameshift/extended and a stop mutation in WT1 as gain-of-function mutations that activate cell cycle genes and promote Wilms tumour cell proliferation
title_short Classification of a frameshift/extended and a stop mutation in WT1 as gain-of-function mutations that activate cell cycle genes and promote Wilms tumour cell proliferation
title_sort classification of a frameshift/extended and a stop mutation in wt1 as gain-of-function mutations that activate cell cycle genes and promote wilms tumour cell proliferation
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4082364/
https://www.ncbi.nlm.nih.gov/pubmed/24619359
http://dx.doi.org/10.1093/hmg/ddu111
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