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IKK inhibition by BMS-345541 suppresses breast tumorigenesis and metastases by targeting GD2(+) cancer stem cells

We have identified that the ganglioside GD2 is a marker for breast cancer stem cells (BCSCs), and that targeting the enzyme GD3 synthase (GD3S, which regulates GD2 biosynthesis) reduces breast tumorigenesis. The pathways regulating GD2 expression, and their anomalous functions in BCSC, are unclear....

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Autores principales: Battula, Venkata Lokesh, Nguyen, Khoa, Sun, Jeff, Pitner, Mary Kathryn, Yuan, Bin, Bartholomeusz, Chandra, Hail, Numsen, Andreeff, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5514883/
https://www.ncbi.nlm.nih.gov/pubmed/28415808
http://dx.doi.org/10.18632/oncotarget.16294
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author Battula, Venkata Lokesh
Nguyen, Khoa
Sun, Jeff
Pitner, Mary Kathryn
Yuan, Bin
Bartholomeusz, Chandra
Hail, Numsen
Andreeff, Michael
author_facet Battula, Venkata Lokesh
Nguyen, Khoa
Sun, Jeff
Pitner, Mary Kathryn
Yuan, Bin
Bartholomeusz, Chandra
Hail, Numsen
Andreeff, Michael
author_sort Battula, Venkata Lokesh
collection PubMed
description We have identified that the ganglioside GD2 is a marker for breast cancer stem cells (BCSCs), and that targeting the enzyme GD3 synthase (GD3S, which regulates GD2 biosynthesis) reduces breast tumorigenesis. The pathways regulating GD2 expression, and their anomalous functions in BCSC, are unclear. Proteomic analysis of GD2(+) and GD2(-) cells from breast cancer cell lines revealed the activation of NFκB signaling in GD2(+) cells. Dose- and time-dependent suppression of NFκB signaling by the small molecule inhibitor BMS-345541 reduced GD2(+) cells by > 90%. Likewise, BMS-345541 inhibited BCSC GD3S expression, mammosphere formation, and cell migration/invasion in vitro. Breast tumor-bearing mice treated with BMS-345541 showed a statistically significant decrease in tumor volume and exhibited prolonged survival compared to control mice, with a median survival of 78 d for the BMS-345541-treated group vs. 58 d for the controls. Moreover, in an experimental metastases model, treatment with BMS-345541 reduced the lung metastases by > 5-fold. These data suggest that GD2 expression and function, and NFκB signaling, are related, and they control BCSCs tumorigenic characteristics. Thus, the suppression of NFκB signaling by BMS-345541 is a potentially important advance in controlling breast cancer growth and metastases.
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spelling pubmed-55148832017-07-24 IKK inhibition by BMS-345541 suppresses breast tumorigenesis and metastases by targeting GD2(+) cancer stem cells Battula, Venkata Lokesh Nguyen, Khoa Sun, Jeff Pitner, Mary Kathryn Yuan, Bin Bartholomeusz, Chandra Hail, Numsen Andreeff, Michael Oncotarget Priority Research Paper We have identified that the ganglioside GD2 is a marker for breast cancer stem cells (BCSCs), and that targeting the enzyme GD3 synthase (GD3S, which regulates GD2 biosynthesis) reduces breast tumorigenesis. The pathways regulating GD2 expression, and their anomalous functions in BCSC, are unclear. Proteomic analysis of GD2(+) and GD2(-) cells from breast cancer cell lines revealed the activation of NFκB signaling in GD2(+) cells. Dose- and time-dependent suppression of NFκB signaling by the small molecule inhibitor BMS-345541 reduced GD2(+) cells by > 90%. Likewise, BMS-345541 inhibited BCSC GD3S expression, mammosphere formation, and cell migration/invasion in vitro. Breast tumor-bearing mice treated with BMS-345541 showed a statistically significant decrease in tumor volume and exhibited prolonged survival compared to control mice, with a median survival of 78 d for the BMS-345541-treated group vs. 58 d for the controls. Moreover, in an experimental metastases model, treatment with BMS-345541 reduced the lung metastases by > 5-fold. These data suggest that GD2 expression and function, and NFκB signaling, are related, and they control BCSCs tumorigenic characteristics. Thus, the suppression of NFκB signaling by BMS-345541 is a potentially important advance in controlling breast cancer growth and metastases. Impact Journals LLC 2017-03-16 /pmc/articles/PMC5514883/ /pubmed/28415808 http://dx.doi.org/10.18632/oncotarget.16294 Text en Copyright: © 2017 Battula 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/) (CC-BY), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Priority Research Paper
Battula, Venkata Lokesh
Nguyen, Khoa
Sun, Jeff
Pitner, Mary Kathryn
Yuan, Bin
Bartholomeusz, Chandra
Hail, Numsen
Andreeff, Michael
IKK inhibition by BMS-345541 suppresses breast tumorigenesis and metastases by targeting GD2(+) cancer stem cells
title IKK inhibition by BMS-345541 suppresses breast tumorigenesis and metastases by targeting GD2(+) cancer stem cells
title_full IKK inhibition by BMS-345541 suppresses breast tumorigenesis and metastases by targeting GD2(+) cancer stem cells
title_fullStr IKK inhibition by BMS-345541 suppresses breast tumorigenesis and metastases by targeting GD2(+) cancer stem cells
title_full_unstemmed IKK inhibition by BMS-345541 suppresses breast tumorigenesis and metastases by targeting GD2(+) cancer stem cells
title_short IKK inhibition by BMS-345541 suppresses breast tumorigenesis and metastases by targeting GD2(+) cancer stem cells
title_sort ikk inhibition by bms-345541 suppresses breast tumorigenesis and metastases by targeting gd2(+) cancer stem cells
topic Priority Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5514883/
https://www.ncbi.nlm.nih.gov/pubmed/28415808
http://dx.doi.org/10.18632/oncotarget.16294
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