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KLF5 controls glutathione metabolism to suppress p190-BCR-ABL+ B-cell lymphoblastic leukemia

High-risk B-cell acute lymphoblastic leukemia (B-ALL) remains a therapeutic challenge despite advances in the use of tyrosine kinase inhibitors and chimeric-antigen-receptor engineered T cells. Lymphoblastic-leukemia precursors are highly sensitive to oxidative stress. KLF5 is a member of the Krüppe...

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Autores principales: Zhang, Cuiping, D'Alessandro, Angelo, Wellendorf, Ashley M., Mohmoud, Fatima, Serrano-Lopez, Juana, Perentesis, John P., Komurov, Kakajan, Alexe, Gabriela, Stegmaier, Kimberly, Whitsett, Jeffrey A., Grimes, H. Leighton, Cancelas, Jose A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6049869/
https://www.ncbi.nlm.nih.gov/pubmed/30038712
http://dx.doi.org/10.18632/oncotarget.25667
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author Zhang, Cuiping
D'Alessandro, Angelo
Wellendorf, Ashley M.
Mohmoud, Fatima
Serrano-Lopez, Juana
Perentesis, John P.
Komurov, Kakajan
Alexe, Gabriela
Stegmaier, Kimberly
Whitsett, Jeffrey A.
Grimes, H. Leighton
Cancelas, Jose A.
author_facet Zhang, Cuiping
D'Alessandro, Angelo
Wellendorf, Ashley M.
Mohmoud, Fatima
Serrano-Lopez, Juana
Perentesis, John P.
Komurov, Kakajan
Alexe, Gabriela
Stegmaier, Kimberly
Whitsett, Jeffrey A.
Grimes, H. Leighton
Cancelas, Jose A.
author_sort Zhang, Cuiping
collection PubMed
description High-risk B-cell acute lymphoblastic leukemia (B-ALL) remains a therapeutic challenge despite advances in the use of tyrosine kinase inhibitors and chimeric-antigen-receptor engineered T cells. Lymphoblastic-leukemia precursors are highly sensitive to oxidative stress. KLF5 is a member of the Krüppel-like family of transcription factors. KLF5 expression is repressed in B-ALL, including BCR-ABL1+ B-ALL. Here, we demonstrate that forced expression of KLF5 in B-ALL cells bypasses the imatinib resistance which is not associated with mutations of BCR-ABL. Expression of Klf5 impaired leukemogenic activity of BCR-ABL1+ B-cell precursors in vitro and in vivo. The complete genetic loss of Klf5 reduced oxidative stress, increased regeneration of reduced glutathione and decreased apoptosis of leukemic precursors. Klf5 regulation of glutathione levels was mediated by its regulation of glutathione-S-transferase Mu 1 (Gstm1), an important regulator of glutathione-mediated detoxification and protein glutathionylation. Expression of Klf5 or the direct Klf5 target gene Gstm1 inhibited clonogenic activity of Klf5(∆/∆) leukemic B-cell precursors and unveiled a Klf5-dependent regulatory loop in glutamine-dependent glutathione metabolism. In summary, we describe a novel mechanism of Klf5 B-ALL suppressor activity through its direct role on the metabolism of antioxidant glutathione levels, a crucial positive regulator of leukemic precursor survival.
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spelling pubmed-60498692018-07-23 KLF5 controls glutathione metabolism to suppress p190-BCR-ABL+ B-cell lymphoblastic leukemia Zhang, Cuiping D'Alessandro, Angelo Wellendorf, Ashley M. Mohmoud, Fatima Serrano-Lopez, Juana Perentesis, John P. Komurov, Kakajan Alexe, Gabriela Stegmaier, Kimberly Whitsett, Jeffrey A. Grimes, H. Leighton Cancelas, Jose A. Oncotarget Research Paper High-risk B-cell acute lymphoblastic leukemia (B-ALL) remains a therapeutic challenge despite advances in the use of tyrosine kinase inhibitors and chimeric-antigen-receptor engineered T cells. Lymphoblastic-leukemia precursors are highly sensitive to oxidative stress. KLF5 is a member of the Krüppel-like family of transcription factors. KLF5 expression is repressed in B-ALL, including BCR-ABL1+ B-ALL. Here, we demonstrate that forced expression of KLF5 in B-ALL cells bypasses the imatinib resistance which is not associated with mutations of BCR-ABL. Expression of Klf5 impaired leukemogenic activity of BCR-ABL1+ B-cell precursors in vitro and in vivo. The complete genetic loss of Klf5 reduced oxidative stress, increased regeneration of reduced glutathione and decreased apoptosis of leukemic precursors. Klf5 regulation of glutathione levels was mediated by its regulation of glutathione-S-transferase Mu 1 (Gstm1), an important regulator of glutathione-mediated detoxification and protein glutathionylation. Expression of Klf5 or the direct Klf5 target gene Gstm1 inhibited clonogenic activity of Klf5(∆/∆) leukemic B-cell precursors and unveiled a Klf5-dependent regulatory loop in glutamine-dependent glutathione metabolism. In summary, we describe a novel mechanism of Klf5 B-ALL suppressor activity through its direct role on the metabolism of antioxidant glutathione levels, a crucial positive regulator of leukemic precursor survival. Impact Journals LLC 2018-07-03 /pmc/articles/PMC6049869/ /pubmed/30038712 http://dx.doi.org/10.18632/oncotarget.25667 Text en Copyright: © 2018 Zhang 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 (http://creativecommons.org/licenses/by/3.0/) 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
Zhang, Cuiping
D'Alessandro, Angelo
Wellendorf, Ashley M.
Mohmoud, Fatima
Serrano-Lopez, Juana
Perentesis, John P.
Komurov, Kakajan
Alexe, Gabriela
Stegmaier, Kimberly
Whitsett, Jeffrey A.
Grimes, H. Leighton
Cancelas, Jose A.
KLF5 controls glutathione metabolism to suppress p190-BCR-ABL+ B-cell lymphoblastic leukemia
title KLF5 controls glutathione metabolism to suppress p190-BCR-ABL+ B-cell lymphoblastic leukemia
title_full KLF5 controls glutathione metabolism to suppress p190-BCR-ABL+ B-cell lymphoblastic leukemia
title_fullStr KLF5 controls glutathione metabolism to suppress p190-BCR-ABL+ B-cell lymphoblastic leukemia
title_full_unstemmed KLF5 controls glutathione metabolism to suppress p190-BCR-ABL+ B-cell lymphoblastic leukemia
title_short KLF5 controls glutathione metabolism to suppress p190-BCR-ABL+ B-cell lymphoblastic leukemia
title_sort klf5 controls glutathione metabolism to suppress p190-bcr-abl+ b-cell lymphoblastic leukemia
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6049869/
https://www.ncbi.nlm.nih.gov/pubmed/30038712
http://dx.doi.org/10.18632/oncotarget.25667
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