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Stable depletion of RUNX1-ETO in Kasumi-1 cells induces expression and enhanced proteolytic activity of Cathepsin G and Neutrophil Elastase

The oncogenic fusion protein RUNX1-ETO is a product of the t(8;21) translocation and consists of the hematopoietic transcriptional master regulator RUNX1 and the repressor ETO. RUNX1-ETO is found in 10–15% of acute myeloid leukemia and interferes with the expression of genes that are essential for m...

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Autores principales: Schoenherr, Caroline, Wohlan, Katharina, Dallmann, Iris, Pich, Andreas, Hegermann, Jan, Ganser, Arnold, Hilfiker-Kleiner, Denise, Heidenreich, Olaf, Scherr, Michaela, Eder, Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6905530/
https://www.ncbi.nlm.nih.gov/pubmed/31826021
http://dx.doi.org/10.1371/journal.pone.0225977
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author Schoenherr, Caroline
Wohlan, Katharina
Dallmann, Iris
Pich, Andreas
Hegermann, Jan
Ganser, Arnold
Hilfiker-Kleiner, Denise
Heidenreich, Olaf
Scherr, Michaela
Eder, Matthias
author_facet Schoenherr, Caroline
Wohlan, Katharina
Dallmann, Iris
Pich, Andreas
Hegermann, Jan
Ganser, Arnold
Hilfiker-Kleiner, Denise
Heidenreich, Olaf
Scherr, Michaela
Eder, Matthias
author_sort Schoenherr, Caroline
collection PubMed
description The oncogenic fusion protein RUNX1-ETO is a product of the t(8;21) translocation and consists of the hematopoietic transcriptional master regulator RUNX1 and the repressor ETO. RUNX1-ETO is found in 10–15% of acute myeloid leukemia and interferes with the expression of genes that are essential for myeloid differentiation. The neutrophil serine protease Cathepsin G is one of the genes suppressed by RUNX1-ETO, but little is known about its impact on the regulation of other lysosomal proteases. By lentiviral transduction of the t(8;21) positive cell line Kasumi-1 with an RUNX1-ETO specific shRNA, we analyzed long-term effects of stable RUNX1-ETO silencing on cellular phenotypes and target gene expression. Stable anti RUNX1-ETO RNAi reduces both proliferation and apoptosis in Kasumi-1 cells. In addition, long-term knockdown of RUNX1-ETO leads to an upregulation of proteolytic activity in Kasumi-1 cells, which may be released in vitro upon cell lysis leading to massive degradation of cellular proteins. We therefore propose that protein expression data of RUNX1-ETO-silenced Kasumi-1 cells must be analyzed with caution, as cell lysis conditions can heavily influence the results of studies on protein expression. Next, a mass spectrometry-based approach was used to identify protease cleavage patterns in RUNX1-ETO-depleted Kasumi-1 cells and Neutrophil Elastase has been identified as a RUNX1-ETO candidate target. Finally, proteolytic activity of Neutrophil Elastase and Cathepsin G was functionally confirmed by si/shRNA-mediated knockdown in Kasumi-1 cells.
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spelling pubmed-69055302019-12-27 Stable depletion of RUNX1-ETO in Kasumi-1 cells induces expression and enhanced proteolytic activity of Cathepsin G and Neutrophil Elastase Schoenherr, Caroline Wohlan, Katharina Dallmann, Iris Pich, Andreas Hegermann, Jan Ganser, Arnold Hilfiker-Kleiner, Denise Heidenreich, Olaf Scherr, Michaela Eder, Matthias PLoS One Research Article The oncogenic fusion protein RUNX1-ETO is a product of the t(8;21) translocation and consists of the hematopoietic transcriptional master regulator RUNX1 and the repressor ETO. RUNX1-ETO is found in 10–15% of acute myeloid leukemia and interferes with the expression of genes that are essential for myeloid differentiation. The neutrophil serine protease Cathepsin G is one of the genes suppressed by RUNX1-ETO, but little is known about its impact on the regulation of other lysosomal proteases. By lentiviral transduction of the t(8;21) positive cell line Kasumi-1 with an RUNX1-ETO specific shRNA, we analyzed long-term effects of stable RUNX1-ETO silencing on cellular phenotypes and target gene expression. Stable anti RUNX1-ETO RNAi reduces both proliferation and apoptosis in Kasumi-1 cells. In addition, long-term knockdown of RUNX1-ETO leads to an upregulation of proteolytic activity in Kasumi-1 cells, which may be released in vitro upon cell lysis leading to massive degradation of cellular proteins. We therefore propose that protein expression data of RUNX1-ETO-silenced Kasumi-1 cells must be analyzed with caution, as cell lysis conditions can heavily influence the results of studies on protein expression. Next, a mass spectrometry-based approach was used to identify protease cleavage patterns in RUNX1-ETO-depleted Kasumi-1 cells and Neutrophil Elastase has been identified as a RUNX1-ETO candidate target. Finally, proteolytic activity of Neutrophil Elastase and Cathepsin G was functionally confirmed by si/shRNA-mediated knockdown in Kasumi-1 cells. Public Library of Science 2019-12-11 /pmc/articles/PMC6905530/ /pubmed/31826021 http://dx.doi.org/10.1371/journal.pone.0225977 Text en © 2019 Schoenherr et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Schoenherr, Caroline
Wohlan, Katharina
Dallmann, Iris
Pich, Andreas
Hegermann, Jan
Ganser, Arnold
Hilfiker-Kleiner, Denise
Heidenreich, Olaf
Scherr, Michaela
Eder, Matthias
Stable depletion of RUNX1-ETO in Kasumi-1 cells induces expression and enhanced proteolytic activity of Cathepsin G and Neutrophil Elastase
title Stable depletion of RUNX1-ETO in Kasumi-1 cells induces expression and enhanced proteolytic activity of Cathepsin G and Neutrophil Elastase
title_full Stable depletion of RUNX1-ETO in Kasumi-1 cells induces expression and enhanced proteolytic activity of Cathepsin G and Neutrophil Elastase
title_fullStr Stable depletion of RUNX1-ETO in Kasumi-1 cells induces expression and enhanced proteolytic activity of Cathepsin G and Neutrophil Elastase
title_full_unstemmed Stable depletion of RUNX1-ETO in Kasumi-1 cells induces expression and enhanced proteolytic activity of Cathepsin G and Neutrophil Elastase
title_short Stable depletion of RUNX1-ETO in Kasumi-1 cells induces expression and enhanced proteolytic activity of Cathepsin G and Neutrophil Elastase
title_sort stable depletion of runx1-eto in kasumi-1 cells induces expression and enhanced proteolytic activity of cathepsin g and neutrophil elastase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6905530/
https://www.ncbi.nlm.nih.gov/pubmed/31826021
http://dx.doi.org/10.1371/journal.pone.0225977
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