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SMYD2 lysine methyltransferase regulates leukemia cell growth and regeneration after genotoxic stress

The molecular determinants governing escape of Acute Myeloid Leukemia (AML) cells from DNA damaging therapy remain poorly defined and account for therapy failures. To isolate genes responsible for leukemia cells regeneration following multiple challenges with irradiation we performed a genome-wide s...

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Autores principales: Zipin-Roitman, Adi, Aqaqe, Nasma, Yassin, Muhammad, Biechonski, Shahar, Amar, Mariam, van Delft, Mark F., Gan, Olga I., McDermott, Sean P., Buzina, Alla, Ketela, Troy, Shlush, Liran, Xie, Stephanie, Voisin, Veronique, Moffat, Jason, Minden, Mark D., Dick, John E., Milyavsky, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5369996/
https://www.ncbi.nlm.nih.gov/pubmed/28187429
http://dx.doi.org/10.18632/oncotarget.15147
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author Zipin-Roitman, Adi
Aqaqe, Nasma
Yassin, Muhammad
Biechonski, Shahar
Amar, Mariam
van Delft, Mark F.
Gan, Olga I.
McDermott, Sean P.
Buzina, Alla
Ketela, Troy
Shlush, Liran
Xie, Stephanie
Voisin, Veronique
Moffat, Jason
Minden, Mark D.
Dick, John E.
Milyavsky, Michael
author_facet Zipin-Roitman, Adi
Aqaqe, Nasma
Yassin, Muhammad
Biechonski, Shahar
Amar, Mariam
van Delft, Mark F.
Gan, Olga I.
McDermott, Sean P.
Buzina, Alla
Ketela, Troy
Shlush, Liran
Xie, Stephanie
Voisin, Veronique
Moffat, Jason
Minden, Mark D.
Dick, John E.
Milyavsky, Michael
author_sort Zipin-Roitman, Adi
collection PubMed
description The molecular determinants governing escape of Acute Myeloid Leukemia (AML) cells from DNA damaging therapy remain poorly defined and account for therapy failures. To isolate genes responsible for leukemia cells regeneration following multiple challenges with irradiation we performed a genome-wide shRNA screen. Some of the isolated hits are known players in the DNA damage response (e.g. p53, CHK2), whereas other, e.g. SMYD2 lysine methyltransferase (KMT), remains uncharacterized in the AML context. Here we report that SMYD2 knockdown confers relative resistance to human AML cells against multiple classes of DNA damaging agents. Induction of the transient quiescence state upon SMYD2 downregulation correlated with the resistance. We revealed that diminished SMYD2 expression resulted in the upregulation of the related methyltransferase SET7/9, suggesting compensatory relationships. Indeed, pharmacological targeting of SET7/9 with (R)-PFI2 inhibitor preferentially inhibited the growth of cells expressing low levels of SMYD2. Finally, decreased expression of SMYD2 in AML patients correlated with the reduced sensitivity to therapy and lower probability to achieve complete remission. We propose that the interplay between SMYD2 and SET7/9 levels shifts leukemia cells from growth to quiescence state that is associated with the higher resistance to DNA damaging agents and rationalize SET7/9 pharmacological targeting in AML.
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spelling pubmed-53699962017-04-17 SMYD2 lysine methyltransferase regulates leukemia cell growth and regeneration after genotoxic stress Zipin-Roitman, Adi Aqaqe, Nasma Yassin, Muhammad Biechonski, Shahar Amar, Mariam van Delft, Mark F. Gan, Olga I. McDermott, Sean P. Buzina, Alla Ketela, Troy Shlush, Liran Xie, Stephanie Voisin, Veronique Moffat, Jason Minden, Mark D. Dick, John E. Milyavsky, Michael Oncotarget Research Paper The molecular determinants governing escape of Acute Myeloid Leukemia (AML) cells from DNA damaging therapy remain poorly defined and account for therapy failures. To isolate genes responsible for leukemia cells regeneration following multiple challenges with irradiation we performed a genome-wide shRNA screen. Some of the isolated hits are known players in the DNA damage response (e.g. p53, CHK2), whereas other, e.g. SMYD2 lysine methyltransferase (KMT), remains uncharacterized in the AML context. Here we report that SMYD2 knockdown confers relative resistance to human AML cells against multiple classes of DNA damaging agents. Induction of the transient quiescence state upon SMYD2 downregulation correlated with the resistance. We revealed that diminished SMYD2 expression resulted in the upregulation of the related methyltransferase SET7/9, suggesting compensatory relationships. Indeed, pharmacological targeting of SET7/9 with (R)-PFI2 inhibitor preferentially inhibited the growth of cells expressing low levels of SMYD2. Finally, decreased expression of SMYD2 in AML patients correlated with the reduced sensitivity to therapy and lower probability to achieve complete remission. We propose that the interplay between SMYD2 and SET7/9 levels shifts leukemia cells from growth to quiescence state that is associated with the higher resistance to DNA damaging agents and rationalize SET7/9 pharmacological targeting in AML. Impact Journals LLC 2017-02-06 /pmc/articles/PMC5369996/ /pubmed/28187429 http://dx.doi.org/10.18632/oncotarget.15147 Text en Copyright: © 2017 Zipin-Roitman et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zipin-Roitman, Adi
Aqaqe, Nasma
Yassin, Muhammad
Biechonski, Shahar
Amar, Mariam
van Delft, Mark F.
Gan, Olga I.
McDermott, Sean P.
Buzina, Alla
Ketela, Troy
Shlush, Liran
Xie, Stephanie
Voisin, Veronique
Moffat, Jason
Minden, Mark D.
Dick, John E.
Milyavsky, Michael
SMYD2 lysine methyltransferase regulates leukemia cell growth and regeneration after genotoxic stress
title SMYD2 lysine methyltransferase regulates leukemia cell growth and regeneration after genotoxic stress
title_full SMYD2 lysine methyltransferase regulates leukemia cell growth and regeneration after genotoxic stress
title_fullStr SMYD2 lysine methyltransferase regulates leukemia cell growth and regeneration after genotoxic stress
title_full_unstemmed SMYD2 lysine methyltransferase regulates leukemia cell growth and regeneration after genotoxic stress
title_short SMYD2 lysine methyltransferase regulates leukemia cell growth and regeneration after genotoxic stress
title_sort smyd2 lysine methyltransferase regulates leukemia cell growth and regeneration after genotoxic stress
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5369996/
https://www.ncbi.nlm.nih.gov/pubmed/28187429
http://dx.doi.org/10.18632/oncotarget.15147
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