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PI3Kδ inhibition elicits anti-leukemic effects through Bim-dependent apoptosis

PI3Kδ plays pivotal roles in the maintenance, proliferation and survival of malignant B-lymphocytes. Although not curative, PI3Kδ inhibitors (PI3Kδi) demonstrate impressive clinical efficacy and, alongside other signaling inhibitors, are revolutionizing the treatment of hematological malignancies. H...

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Autores principales: Carter, M J, Cox, K L, Blakemore, S J, Turaj, A H, Oldham, R J, Dahal, L N, Tannheimer, S, Forconi, F, Packham, G, Cragg, M S
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5467045/
https://www.ncbi.nlm.nih.gov/pubmed/27843137
http://dx.doi.org/10.1038/leu.2016.333
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author Carter, M J
Cox, K L
Blakemore, S J
Turaj, A H
Oldham, R J
Dahal, L N
Tannheimer, S
Forconi, F
Packham, G
Cragg, M S
author_facet Carter, M J
Cox, K L
Blakemore, S J
Turaj, A H
Oldham, R J
Dahal, L N
Tannheimer, S
Forconi, F
Packham, G
Cragg, M S
author_sort Carter, M J
collection PubMed
description PI3Kδ plays pivotal roles in the maintenance, proliferation and survival of malignant B-lymphocytes. Although not curative, PI3Kδ inhibitors (PI3Kδi) demonstrate impressive clinical efficacy and, alongside other signaling inhibitors, are revolutionizing the treatment of hematological malignancies. However, only limited in vivo data are available regarding their mechanism of action. With the rising number of novel treatments, the challenge is to identify combinations that deliver curative regimes. A deeper understanding of the molecular mechanism is required to guide these selections. Currently, immunomodulation, inhibition of B-cell receptor signaling, chemokine/cytokine signaling and apoptosis represent potential therapeutic mechanisms for PI3Kδi. Here we characterize the molecular mechanisms responsible for PI3Kδi-induced apoptosis in an in vivo model of chronic lymphocytic leukemia (CLL). In vitro, PI3Kδi-induced substantive apoptosis and disrupted microenvironment-derived signaling in murine (Eμ-Tcl1) and human (CLL) leukemia cells. Furthermore, PI3Kδi imparted significant therapeutic responses in Eμ-Tcl1-bearing animals and enhanced anti-CD20 monoclonal antibody therapy. Responses correlated with upregulation of the pro-apoptotic BH3-only protein Bim. Accordingly, Bim(−/−) Eμ-Tcl1 Tg leukemias demonstrated resistance to PI3Kδi-induced apoptosis were refractory to PI3Kδi in vivo and failed to display combination efficacy with anti-CD20 monoclonal antibody therapy. Therefore, Bim-dependent apoptosis represents a key in vivo therapeutic mechanism for PI3Kδi, both alone and in combination therapy regimes.
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spelling pubmed-54670452017-06-22 PI3Kδ inhibition elicits anti-leukemic effects through Bim-dependent apoptosis Carter, M J Cox, K L Blakemore, S J Turaj, A H Oldham, R J Dahal, L N Tannheimer, S Forconi, F Packham, G Cragg, M S Leukemia Original Article PI3Kδ plays pivotal roles in the maintenance, proliferation and survival of malignant B-lymphocytes. Although not curative, PI3Kδ inhibitors (PI3Kδi) demonstrate impressive clinical efficacy and, alongside other signaling inhibitors, are revolutionizing the treatment of hematological malignancies. However, only limited in vivo data are available regarding their mechanism of action. With the rising number of novel treatments, the challenge is to identify combinations that deliver curative regimes. A deeper understanding of the molecular mechanism is required to guide these selections. Currently, immunomodulation, inhibition of B-cell receptor signaling, chemokine/cytokine signaling and apoptosis represent potential therapeutic mechanisms for PI3Kδi. Here we characterize the molecular mechanisms responsible for PI3Kδi-induced apoptosis in an in vivo model of chronic lymphocytic leukemia (CLL). In vitro, PI3Kδi-induced substantive apoptosis and disrupted microenvironment-derived signaling in murine (Eμ-Tcl1) and human (CLL) leukemia cells. Furthermore, PI3Kδi imparted significant therapeutic responses in Eμ-Tcl1-bearing animals and enhanced anti-CD20 monoclonal antibody therapy. Responses correlated with upregulation of the pro-apoptotic BH3-only protein Bim. Accordingly, Bim(−/−) Eμ-Tcl1 Tg leukemias demonstrated resistance to PI3Kδi-induced apoptosis were refractory to PI3Kδi in vivo and failed to display combination efficacy with anti-CD20 monoclonal antibody therapy. Therefore, Bim-dependent apoptosis represents a key in vivo therapeutic mechanism for PI3Kδi, both alone and in combination therapy regimes. Nature Publishing Group 2017-06 2016-12-20 /pmc/articles/PMC5467045/ /pubmed/27843137 http://dx.doi.org/10.1038/leu.2016.333 Text en Copyright © 2017 The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Original Article
Carter, M J
Cox, K L
Blakemore, S J
Turaj, A H
Oldham, R J
Dahal, L N
Tannheimer, S
Forconi, F
Packham, G
Cragg, M S
PI3Kδ inhibition elicits anti-leukemic effects through Bim-dependent apoptosis
title PI3Kδ inhibition elicits anti-leukemic effects through Bim-dependent apoptosis
title_full PI3Kδ inhibition elicits anti-leukemic effects through Bim-dependent apoptosis
title_fullStr PI3Kδ inhibition elicits anti-leukemic effects through Bim-dependent apoptosis
title_full_unstemmed PI3Kδ inhibition elicits anti-leukemic effects through Bim-dependent apoptosis
title_short PI3Kδ inhibition elicits anti-leukemic effects through Bim-dependent apoptosis
title_sort pi3kδ inhibition elicits anti-leukemic effects through bim-dependent apoptosis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5467045/
https://www.ncbi.nlm.nih.gov/pubmed/27843137
http://dx.doi.org/10.1038/leu.2016.333
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