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Small Molecule Inhibitor of CBFβ-RUNX Binding for RUNX Transcription Factor Driven Cancers

Transcription factors have traditionally been viewed with skepticism as viable drug targets, but they offer the potential for completely novel mechanisms of action that could more effectively address the stem cell like properties, such as self-renewal and chemo-resistance, that lead to the failure o...

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Autores principales: Illendula, Anuradha, Gilmour, Jane, Grembecka, Jolanta, Tirumala, Venkata Sesha Srimath, Boulton, Adam, Kuntimaddi, Aravinda, Schmidt, Charles, Wang, Lixin, Pulikkan, John A., Zong, Hongliang, Parlak, Mahmut, Kuscu, Cem, Pickin, Anna, Zhou, Yunpeng, Gao, Yan, Mishra, Lauren, Adli, Mazhar, Castilla, Lucio H., Rajewski, Roger A., Janes, Kevin A., Guzman, Monica L., Bonifer, Constanze, Bushweller, John H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4919611/
https://www.ncbi.nlm.nih.gov/pubmed/27428424
http://dx.doi.org/10.1016/j.ebiom.2016.04.032
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author Illendula, Anuradha
Gilmour, Jane
Grembecka, Jolanta
Tirumala, Venkata Sesha Srimath
Boulton, Adam
Kuntimaddi, Aravinda
Schmidt, Charles
Wang, Lixin
Pulikkan, John A.
Zong, Hongliang
Parlak, Mahmut
Kuscu, Cem
Pickin, Anna
Zhou, Yunpeng
Gao, Yan
Mishra, Lauren
Adli, Mazhar
Castilla, Lucio H.
Rajewski, Roger A.
Janes, Kevin A.
Guzman, Monica L.
Bonifer, Constanze
Bushweller, John H.
author_facet Illendula, Anuradha
Gilmour, Jane
Grembecka, Jolanta
Tirumala, Venkata Sesha Srimath
Boulton, Adam
Kuntimaddi, Aravinda
Schmidt, Charles
Wang, Lixin
Pulikkan, John A.
Zong, Hongliang
Parlak, Mahmut
Kuscu, Cem
Pickin, Anna
Zhou, Yunpeng
Gao, Yan
Mishra, Lauren
Adli, Mazhar
Castilla, Lucio H.
Rajewski, Roger A.
Janes, Kevin A.
Guzman, Monica L.
Bonifer, Constanze
Bushweller, John H.
author_sort Illendula, Anuradha
collection PubMed
description Transcription factors have traditionally been viewed with skepticism as viable drug targets, but they offer the potential for completely novel mechanisms of action that could more effectively address the stem cell like properties, such as self-renewal and chemo-resistance, that lead to the failure of traditional chemotherapy approaches. Core binding factor is a heterodimeric transcription factor comprised of one of 3 RUNX proteins (RUNX1-3) and a CBFβ binding partner. CBFβ enhances DNA binding of RUNX subunits by relieving auto-inhibition. Both RUNX1 and CBFβ are frequently mutated in human leukemia. More recently, RUNX proteins have been shown to be key players in epithelial cancers, suggesting the targeting of this pathway could have broad utility. In order to test this, we developed small molecules which bind to CBFβ and inhibit its binding to RUNX. Treatment with these inhibitors reduces binding of RUNX1 to target genes, alters the expression of RUNX1 target genes, and impacts cell survival and differentiation. These inhibitors show efficacy against leukemia cells as well as basal-like (triple-negative) breast cancer cells. These inhibitors provide effective tools to probe the utility of targeting RUNX transcription factor function in other cancers.
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spelling pubmed-49196112016-06-30 Small Molecule Inhibitor of CBFβ-RUNX Binding for RUNX Transcription Factor Driven Cancers Illendula, Anuradha Gilmour, Jane Grembecka, Jolanta Tirumala, Venkata Sesha Srimath Boulton, Adam Kuntimaddi, Aravinda Schmidt, Charles Wang, Lixin Pulikkan, John A. Zong, Hongliang Parlak, Mahmut Kuscu, Cem Pickin, Anna Zhou, Yunpeng Gao, Yan Mishra, Lauren Adli, Mazhar Castilla, Lucio H. Rajewski, Roger A. Janes, Kevin A. Guzman, Monica L. Bonifer, Constanze Bushweller, John H. EBioMedicine Research Paper Transcription factors have traditionally been viewed with skepticism as viable drug targets, but they offer the potential for completely novel mechanisms of action that could more effectively address the stem cell like properties, such as self-renewal and chemo-resistance, that lead to the failure of traditional chemotherapy approaches. Core binding factor is a heterodimeric transcription factor comprised of one of 3 RUNX proteins (RUNX1-3) and a CBFβ binding partner. CBFβ enhances DNA binding of RUNX subunits by relieving auto-inhibition. Both RUNX1 and CBFβ are frequently mutated in human leukemia. More recently, RUNX proteins have been shown to be key players in epithelial cancers, suggesting the targeting of this pathway could have broad utility. In order to test this, we developed small molecules which bind to CBFβ and inhibit its binding to RUNX. Treatment with these inhibitors reduces binding of RUNX1 to target genes, alters the expression of RUNX1 target genes, and impacts cell survival and differentiation. These inhibitors show efficacy against leukemia cells as well as basal-like (triple-negative) breast cancer cells. These inhibitors provide effective tools to probe the utility of targeting RUNX transcription factor function in other cancers. Elsevier 2016-04-29 /pmc/articles/PMC4919611/ /pubmed/27428424 http://dx.doi.org/10.1016/j.ebiom.2016.04.032 Text en © 2016 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Illendula, Anuradha
Gilmour, Jane
Grembecka, Jolanta
Tirumala, Venkata Sesha Srimath
Boulton, Adam
Kuntimaddi, Aravinda
Schmidt, Charles
Wang, Lixin
Pulikkan, John A.
Zong, Hongliang
Parlak, Mahmut
Kuscu, Cem
Pickin, Anna
Zhou, Yunpeng
Gao, Yan
Mishra, Lauren
Adli, Mazhar
Castilla, Lucio H.
Rajewski, Roger A.
Janes, Kevin A.
Guzman, Monica L.
Bonifer, Constanze
Bushweller, John H.
Small Molecule Inhibitor of CBFβ-RUNX Binding for RUNX Transcription Factor Driven Cancers
title Small Molecule Inhibitor of CBFβ-RUNX Binding for RUNX Transcription Factor Driven Cancers
title_full Small Molecule Inhibitor of CBFβ-RUNX Binding for RUNX Transcription Factor Driven Cancers
title_fullStr Small Molecule Inhibitor of CBFβ-RUNX Binding for RUNX Transcription Factor Driven Cancers
title_full_unstemmed Small Molecule Inhibitor of CBFβ-RUNX Binding for RUNX Transcription Factor Driven Cancers
title_short Small Molecule Inhibitor of CBFβ-RUNX Binding for RUNX Transcription Factor Driven Cancers
title_sort small molecule inhibitor of cbfβ-runx binding for runx transcription factor driven cancers
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4919611/
https://www.ncbi.nlm.nih.gov/pubmed/27428424
http://dx.doi.org/10.1016/j.ebiom.2016.04.032
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