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Rigosertib induces cell death of a myelodysplastic syndrome-derived cell line by DNA damage-induced G2/M arrest

A multi-kinase inhibitor, rigosertib (ON 01910.Na) has recently been highlighted as a novel type of anti-cancer agent for the treatment of the myelodysplastic syndromes (MDS), but its action mechanisms remain to be clarified. We investigated the in vitro effects of rigosertib on an MDS-derived cell...

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Autores principales: Hyoda, Tomoko, Tsujioka, Takayuki, Nakahara, Takako, Suemori, Shin-ichiro, Okamoto, Shuichiro, Kataoka, Mikio, Tohyama, Kaoru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4376437/
https://www.ncbi.nlm.nih.gov/pubmed/25580850
http://dx.doi.org/10.1111/cas.12605
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author Hyoda, Tomoko
Tsujioka, Takayuki
Nakahara, Takako
Suemori, Shin-ichiro
Okamoto, Shuichiro
Kataoka, Mikio
Tohyama, Kaoru
author_facet Hyoda, Tomoko
Tsujioka, Takayuki
Nakahara, Takako
Suemori, Shin-ichiro
Okamoto, Shuichiro
Kataoka, Mikio
Tohyama, Kaoru
author_sort Hyoda, Tomoko
collection PubMed
description A multi-kinase inhibitor, rigosertib (ON 01910.Na) has recently been highlighted as a novel type of anti-cancer agent for the treatment of the myelodysplastic syndromes (MDS), but its action mechanisms remain to be clarified. We investigated the in vitro effects of rigosertib on an MDS-derived cell line MDS-L and a myeloid leukemia cell line HL-60. Rigosertib suppressed the proliferation of both HL-60 and MDS-L cells and induced apoptosis by inhibition of the PI3 kinase/Akt pathway. As the effects on cell cycle, rigosertib treatment promoted the phosphorylation of histone H2AX and led to the DNA damage-induced G2/M arrest. In addition, an immunofluorescence staining study demonstrated the abnormal localization of aurora A kinase, suggesting that rigosertib causes perturbation of spindle assembly and deregulated mitotic patterns towards cell cycle arrest and apoptosis. We also found that rigosertib exerted growth inhibitory effects on two lymphoid cell lines, Jurkat and Ramos. We further examined the molecular pathways influenced by rigosertib from the gene expression profiling data of MDS-L cells and found a possible involvement of rigosertib treatment in the upregulation of the genes related to microtubule kinetics and the downregulation of the mRNA degradation system. The gene set enrichment analysis showed the suppression of “nonsense-mediated mRNA decay (NMD)” as the most significantly affected gene set. These data provide a new aspect and a potential utility of rigosertib for the treatment of refractory hematopoietic malignancies.
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spelling pubmed-43764372015-10-05 Rigosertib induces cell death of a myelodysplastic syndrome-derived cell line by DNA damage-induced G2/M arrest Hyoda, Tomoko Tsujioka, Takayuki Nakahara, Takako Suemori, Shin-ichiro Okamoto, Shuichiro Kataoka, Mikio Tohyama, Kaoru Cancer Sci Original Articles A multi-kinase inhibitor, rigosertib (ON 01910.Na) has recently been highlighted as a novel type of anti-cancer agent for the treatment of the myelodysplastic syndromes (MDS), but its action mechanisms remain to be clarified. We investigated the in vitro effects of rigosertib on an MDS-derived cell line MDS-L and a myeloid leukemia cell line HL-60. Rigosertib suppressed the proliferation of both HL-60 and MDS-L cells and induced apoptosis by inhibition of the PI3 kinase/Akt pathway. As the effects on cell cycle, rigosertib treatment promoted the phosphorylation of histone H2AX and led to the DNA damage-induced G2/M arrest. In addition, an immunofluorescence staining study demonstrated the abnormal localization of aurora A kinase, suggesting that rigosertib causes perturbation of spindle assembly and deregulated mitotic patterns towards cell cycle arrest and apoptosis. We also found that rigosertib exerted growth inhibitory effects on two lymphoid cell lines, Jurkat and Ramos. We further examined the molecular pathways influenced by rigosertib from the gene expression profiling data of MDS-L cells and found a possible involvement of rigosertib treatment in the upregulation of the genes related to microtubule kinetics and the downregulation of the mRNA degradation system. The gene set enrichment analysis showed the suppression of “nonsense-mediated mRNA decay (NMD)” as the most significantly affected gene set. These data provide a new aspect and a potential utility of rigosertib for the treatment of refractory hematopoietic malignancies. BlackWell Publishing Ltd 2015-03 2015-02-20 /pmc/articles/PMC4376437/ /pubmed/25580850 http://dx.doi.org/10.1111/cas.12605 Text en © 2015 The Authors. Cancer Science published by Wiley Publishing Asia Pty Ltd on behalf of Japanese Cancer Association. http://creativecommons.org/licenses/by-nc/4.0/ This is an open access article under the terms of the Creative Commons Attribution-NonCommercial License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Original Articles
Hyoda, Tomoko
Tsujioka, Takayuki
Nakahara, Takako
Suemori, Shin-ichiro
Okamoto, Shuichiro
Kataoka, Mikio
Tohyama, Kaoru
Rigosertib induces cell death of a myelodysplastic syndrome-derived cell line by DNA damage-induced G2/M arrest
title Rigosertib induces cell death of a myelodysplastic syndrome-derived cell line by DNA damage-induced G2/M arrest
title_full Rigosertib induces cell death of a myelodysplastic syndrome-derived cell line by DNA damage-induced G2/M arrest
title_fullStr Rigosertib induces cell death of a myelodysplastic syndrome-derived cell line by DNA damage-induced G2/M arrest
title_full_unstemmed Rigosertib induces cell death of a myelodysplastic syndrome-derived cell line by DNA damage-induced G2/M arrest
title_short Rigosertib induces cell death of a myelodysplastic syndrome-derived cell line by DNA damage-induced G2/M arrest
title_sort rigosertib induces cell death of a myelodysplastic syndrome-derived cell line by dna damage-induced g2/m arrest
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4376437/
https://www.ncbi.nlm.nih.gov/pubmed/25580850
http://dx.doi.org/10.1111/cas.12605
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