NSC348884 cytotoxicity is not mediated by inhibition of nucleophosmin oligomerization

Abstract Nucleophosmin (NPM) mutations causing its export from the nucleoli to the cytoplasm are frequent in acute myeloid leukemia (AML). Due to heterooligomerization of wild type NPM with the AML-related mutant, the wild-type becomes misplaced from the nucleoli and its functions are significantly...

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Main Authors: Markéta Šašinková, Petr Heřman, Aleš Holoubek, Dita Strachotová, Petra Otevřelová, Dana Grebeňová, Kateřina Kuželová, Barbora Brodská
Format: Article
Language:English
Published: Nature Publishing Group 2021-01-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-020-80224-1
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spelling doaj-1b474fa87d0546bcb278d14120b4631c2021-01-17T12:35:32ZengNature Publishing GroupScientific Reports2045-23222021-01-0111111710.1038/s41598-020-80224-1NSC348884 cytotoxicity is not mediated by inhibition of nucleophosmin oligomerizationMarkéta Šašinková0Petr Heřman1Aleš Holoubek2Dita Strachotová3Petra Otevřelová4Dana Grebeňová5Kateřina Kuželová6Barbora Brodská7Department of Proteomics, Institute of Hematology and Blood TransfusionFaculty of Mathematics and Physics, Institute of Physics, Charles UniversityDepartment of Proteomics, Institute of Hematology and Blood TransfusionFaculty of Mathematics and Physics, Institute of Physics, Charles UniversityDepartment of Proteomics, Institute of Hematology and Blood TransfusionDepartment of Proteomics, Institute of Hematology and Blood TransfusionDepartment of Proteomics, Institute of Hematology and Blood TransfusionDepartment of Proteomics, Institute of Hematology and Blood TransfusionAbstract Nucleophosmin (NPM) mutations causing its export from the nucleoli to the cytoplasm are frequent in acute myeloid leukemia (AML). Due to heterooligomerization of wild type NPM with the AML-related mutant, the wild-type becomes misplaced from the nucleoli and its functions are significantly altered. Dissociation of NPM heterooligomers may thus restore the proper localization and function of wild-type NPM. NSC348884 is supposed to act as a potent inhibitor of NPM oligomerization. The effect of NSC348884 on the NPM oligomerization was thoroughly examined by fluorescence lifetime imaging with utilization of FRET and by a set of immunoprecipitation and electrophoretic methods. Leukemia-derived cell lines and primary AML cells as well as cells transfected with fluorescently labeled NPM forms were investigated. Our results clearly demonstrate that NSC348884 does not inhibit formation of NPM oligomers neither in vivo nor in vitro. Instead, we document that NSC348884 cytotoxicity is rather associated with modified cell adhesion signaling. The cytotoxic mechanism of NSC348884 has therefore to be reconsidered.https://doi.org/10.1038/s41598-020-80224-1
collection DOAJ
language English
format Article
sources DOAJ
author Markéta Šašinková
Petr Heřman
Aleš Holoubek
Dita Strachotová
Petra Otevřelová
Dana Grebeňová
Kateřina Kuželová
Barbora Brodská
spellingShingle Markéta Šašinková
Petr Heřman
Aleš Holoubek
Dita Strachotová
Petra Otevřelová
Dana Grebeňová
Kateřina Kuželová
Barbora Brodská
NSC348884 cytotoxicity is not mediated by inhibition of nucleophosmin oligomerization
Scientific Reports
author_facet Markéta Šašinková
Petr Heřman
Aleš Holoubek
Dita Strachotová
Petra Otevřelová
Dana Grebeňová
Kateřina Kuželová
Barbora Brodská
author_sort Markéta Šašinková
title NSC348884 cytotoxicity is not mediated by inhibition of nucleophosmin oligomerization
title_short NSC348884 cytotoxicity is not mediated by inhibition of nucleophosmin oligomerization
title_full NSC348884 cytotoxicity is not mediated by inhibition of nucleophosmin oligomerization
title_fullStr NSC348884 cytotoxicity is not mediated by inhibition of nucleophosmin oligomerization
title_full_unstemmed NSC348884 cytotoxicity is not mediated by inhibition of nucleophosmin oligomerization
title_sort nsc348884 cytotoxicity is not mediated by inhibition of nucleophosmin oligomerization
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-01-01
description Abstract Nucleophosmin (NPM) mutations causing its export from the nucleoli to the cytoplasm are frequent in acute myeloid leukemia (AML). Due to heterooligomerization of wild type NPM with the AML-related mutant, the wild-type becomes misplaced from the nucleoli and its functions are significantly altered. Dissociation of NPM heterooligomers may thus restore the proper localization and function of wild-type NPM. NSC348884 is supposed to act as a potent inhibitor of NPM oligomerization. The effect of NSC348884 on the NPM oligomerization was thoroughly examined by fluorescence lifetime imaging with utilization of FRET and by a set of immunoprecipitation and electrophoretic methods. Leukemia-derived cell lines and primary AML cells as well as cells transfected with fluorescently labeled NPM forms were investigated. Our results clearly demonstrate that NSC348884 does not inhibit formation of NPM oligomers neither in vivo nor in vitro. Instead, we document that NSC348884 cytotoxicity is rather associated with modified cell adhesion signaling. The cytotoxic mechanism of NSC348884 has therefore to be reconsidered.
url https://doi.org/10.1038/s41598-020-80224-1
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