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RSK inhibitor BI-D1870 inhibits acute myeloid leukemia cell proliferation by targeting mitotic exit

The 90 kDa Ribosomal S6 Kinase (RSK) drives cell proliferation and survival in cancers, although its oncogenic mechanism has not been well characterized. Phosphorylated level of RSK (T573) was increased in acute myeloid leukemia (AML) patients and associated with poor survival. To examine the role o...

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Autores principales: Chae, Hee-Don, Dutta, Ritika, Tiu, Bruce, Hoff, Fieke W., Accordi, Benedetta, Serafin, Valentina, Youn, Minyoung, Huang, Min, Sumarsono, Nathan, Davis, Kara L., Lacayo, Norman J., Pigazzi, Martina, Horton, Terzah M., Kornblau, Steven M., Sakamoto, Kathleen M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7321696/
https://www.ncbi.nlm.nih.gov/pubmed/32637030
http://dx.doi.org/10.18632/oncotarget.27630
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author Chae, Hee-Don
Dutta, Ritika
Tiu, Bruce
Hoff, Fieke W.
Accordi, Benedetta
Serafin, Valentina
Youn, Minyoung
Huang, Min
Sumarsono, Nathan
Davis, Kara L.
Lacayo, Norman J.
Pigazzi, Martina
Horton, Terzah M.
Kornblau, Steven M.
Sakamoto, Kathleen M.
author_facet Chae, Hee-Don
Dutta, Ritika
Tiu, Bruce
Hoff, Fieke W.
Accordi, Benedetta
Serafin, Valentina
Youn, Minyoung
Huang, Min
Sumarsono, Nathan
Davis, Kara L.
Lacayo, Norman J.
Pigazzi, Martina
Horton, Terzah M.
Kornblau, Steven M.
Sakamoto, Kathleen M.
author_sort Chae, Hee-Don
collection PubMed
description The 90 kDa Ribosomal S6 Kinase (RSK) drives cell proliferation and survival in cancers, although its oncogenic mechanism has not been well characterized. Phosphorylated level of RSK (T573) was increased in acute myeloid leukemia (AML) patients and associated with poor survival. To examine the role of RSK in AML, we analyzed apoptosis and the cell cycle profile following treatment with BI-D1870, a potent inhibitor of RSK. BI-D1870 treatment increased the G2/M population and induced apoptosis in AML cell lines and patient AML cells. Characterization of mitotic phases showed that the metaphase/anaphase transition was significantly inhibited by BI-D1870. BI-D1870 treatment impeded the association of activator CDC20 with APC/C, but increased binding of inhibitor MAD2 to CDC20, preventing mitotic exit. Moreover, the inactivation of spindle assembly checkpoint or MAD2 knockdown released cells from BI-D1870-induced metaphase arrest. Therefore, we investigated whether BI-D1870 potentiates the anti-leukemic activity of vincristine by targeting mitotic exit. Combination treatment of BI-D1870 and vincristine synergistically increased mitotic arrest and apoptosis in acute leukemia cells. These data show that BI-D1870 induces apoptosis of AML cells alone and in combination with vincristine through blocking mitotic exit, providing a novel approach to overcoming vincristine resistance in AML cells.
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spelling pubmed-73216962020-07-06 RSK inhibitor BI-D1870 inhibits acute myeloid leukemia cell proliferation by targeting mitotic exit Chae, Hee-Don Dutta, Ritika Tiu, Bruce Hoff, Fieke W. Accordi, Benedetta Serafin, Valentina Youn, Minyoung Huang, Min Sumarsono, Nathan Davis, Kara L. Lacayo, Norman J. Pigazzi, Martina Horton, Terzah M. Kornblau, Steven M. Sakamoto, Kathleen M. Oncotarget Research Paper The 90 kDa Ribosomal S6 Kinase (RSK) drives cell proliferation and survival in cancers, although its oncogenic mechanism has not been well characterized. Phosphorylated level of RSK (T573) was increased in acute myeloid leukemia (AML) patients and associated with poor survival. To examine the role of RSK in AML, we analyzed apoptosis and the cell cycle profile following treatment with BI-D1870, a potent inhibitor of RSK. BI-D1870 treatment increased the G2/M population and induced apoptosis in AML cell lines and patient AML cells. Characterization of mitotic phases showed that the metaphase/anaphase transition was significantly inhibited by BI-D1870. BI-D1870 treatment impeded the association of activator CDC20 with APC/C, but increased binding of inhibitor MAD2 to CDC20, preventing mitotic exit. Moreover, the inactivation of spindle assembly checkpoint or MAD2 knockdown released cells from BI-D1870-induced metaphase arrest. Therefore, we investigated whether BI-D1870 potentiates the anti-leukemic activity of vincristine by targeting mitotic exit. Combination treatment of BI-D1870 and vincristine synergistically increased mitotic arrest and apoptosis in acute leukemia cells. These data show that BI-D1870 induces apoptosis of AML cells alone and in combination with vincristine through blocking mitotic exit, providing a novel approach to overcoming vincristine resistance in AML cells. Impact Journals LLC 2020-06-23 /pmc/articles/PMC7321696/ /pubmed/32637030 http://dx.doi.org/10.18632/oncotarget.27630 Text en http://creativecommons.org/licenses/by/3.0/ Copyright: Chae et al. This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Chae, Hee-Don
Dutta, Ritika
Tiu, Bruce
Hoff, Fieke W.
Accordi, Benedetta
Serafin, Valentina
Youn, Minyoung
Huang, Min
Sumarsono, Nathan
Davis, Kara L.
Lacayo, Norman J.
Pigazzi, Martina
Horton, Terzah M.
Kornblau, Steven M.
Sakamoto, Kathleen M.
RSK inhibitor BI-D1870 inhibits acute myeloid leukemia cell proliferation by targeting mitotic exit
title RSK inhibitor BI-D1870 inhibits acute myeloid leukemia cell proliferation by targeting mitotic exit
title_full RSK inhibitor BI-D1870 inhibits acute myeloid leukemia cell proliferation by targeting mitotic exit
title_fullStr RSK inhibitor BI-D1870 inhibits acute myeloid leukemia cell proliferation by targeting mitotic exit
title_full_unstemmed RSK inhibitor BI-D1870 inhibits acute myeloid leukemia cell proliferation by targeting mitotic exit
title_short RSK inhibitor BI-D1870 inhibits acute myeloid leukemia cell proliferation by targeting mitotic exit
title_sort rsk inhibitor bi-d1870 inhibits acute myeloid leukemia cell proliferation by targeting mitotic exit
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7321696/
https://www.ncbi.nlm.nih.gov/pubmed/32637030
http://dx.doi.org/10.18632/oncotarget.27630
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