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Pharmacological targeting of the transcription factor SOX18 delays breast cancer in mice

Pharmacological targeting of transcription factors holds great promise for the development of new therapeutics, but strategies based on blockade of DNA binding, nuclear shuttling, or individual protein partner recruitment have yielded limited success to date. Transcription factors typically engage i...

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Autores principales: Overman, Jeroen, Fontaine, Frank, Moustaqil, Mehdi, Mittal, Deepak, Sierecki, Emma, Sacilotto, Natalia, Zuegg, Johannes, Robertson, Avril AB, Holmes, Kelly, Salim, Angela A, Mamidyala, Sreeman, Butler, Mark S, Robinson, Ashley S, Lesieur, Emmanuelle, Johnston, Wayne, Alexandrov, Kirill, Black, Brian L, Hogan, Benjamin M, De Val, Sarah, Capon, Robert J, Carroll, Jason S, Bailey, Timothy L, Koopman, Peter, Jauch, Ralf, Cooper, Matthew A, Gambin, Yann, Francois, Mathias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5283831/
https://www.ncbi.nlm.nih.gov/pubmed/28137359
http://dx.doi.org/10.7554/eLife.21221
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author Overman, Jeroen
Fontaine, Frank
Moustaqil, Mehdi
Mittal, Deepak
Sierecki, Emma
Sacilotto, Natalia
Zuegg, Johannes
Robertson, Avril AB
Holmes, Kelly
Salim, Angela A
Mamidyala, Sreeman
Butler, Mark S
Robinson, Ashley S
Lesieur, Emmanuelle
Johnston, Wayne
Alexandrov, Kirill
Black, Brian L
Hogan, Benjamin M
De Val, Sarah
Capon, Robert J
Carroll, Jason S
Bailey, Timothy L
Koopman, Peter
Jauch, Ralf
Cooper, Matthew A
Gambin, Yann
Francois, Mathias
author_facet Overman, Jeroen
Fontaine, Frank
Moustaqil, Mehdi
Mittal, Deepak
Sierecki, Emma
Sacilotto, Natalia
Zuegg, Johannes
Robertson, Avril AB
Holmes, Kelly
Salim, Angela A
Mamidyala, Sreeman
Butler, Mark S
Robinson, Ashley S
Lesieur, Emmanuelle
Johnston, Wayne
Alexandrov, Kirill
Black, Brian L
Hogan, Benjamin M
De Val, Sarah
Capon, Robert J
Carroll, Jason S
Bailey, Timothy L
Koopman, Peter
Jauch, Ralf
Cooper, Matthew A
Gambin, Yann
Francois, Mathias
author_sort Overman, Jeroen
collection PubMed
description Pharmacological targeting of transcription factors holds great promise for the development of new therapeutics, but strategies based on blockade of DNA binding, nuclear shuttling, or individual protein partner recruitment have yielded limited success to date. Transcription factors typically engage in complex interaction networks, likely masking the effects of specifically inhibiting single protein-protein interactions. Here, we used a combination of genomic, proteomic and biophysical methods to discover a suite of protein-protein interactions involving the SOX18 transcription factor, a known regulator of vascular development and disease. We describe a small-molecule that is able to disrupt a discrete subset of SOX18-dependent interactions. This compound selectively suppressed SOX18 transcriptional outputs in vitro and interfered with vascular development in zebrafish larvae. In a mouse pre-clinical model of breast cancer, treatment with this inhibitor significantly improved survival by reducing tumour vascular density and metastatic spread. Our studies validate an interactome-based molecular strategy to interfere with transcription factor activity, for the development of novel disease therapeutics.
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spelling pubmed-52838312017-02-01 Pharmacological targeting of the transcription factor SOX18 delays breast cancer in mice Overman, Jeroen Fontaine, Frank Moustaqil, Mehdi Mittal, Deepak Sierecki, Emma Sacilotto, Natalia Zuegg, Johannes Robertson, Avril AB Holmes, Kelly Salim, Angela A Mamidyala, Sreeman Butler, Mark S Robinson, Ashley S Lesieur, Emmanuelle Johnston, Wayne Alexandrov, Kirill Black, Brian L Hogan, Benjamin M De Val, Sarah Capon, Robert J Carroll, Jason S Bailey, Timothy L Koopman, Peter Jauch, Ralf Cooper, Matthew A Gambin, Yann Francois, Mathias eLife Biochemistry and Chemical Biology Pharmacological targeting of transcription factors holds great promise for the development of new therapeutics, but strategies based on blockade of DNA binding, nuclear shuttling, or individual protein partner recruitment have yielded limited success to date. Transcription factors typically engage in complex interaction networks, likely masking the effects of specifically inhibiting single protein-protein interactions. Here, we used a combination of genomic, proteomic and biophysical methods to discover a suite of protein-protein interactions involving the SOX18 transcription factor, a known regulator of vascular development and disease. We describe a small-molecule that is able to disrupt a discrete subset of SOX18-dependent interactions. This compound selectively suppressed SOX18 transcriptional outputs in vitro and interfered with vascular development in zebrafish larvae. In a mouse pre-clinical model of breast cancer, treatment with this inhibitor significantly improved survival by reducing tumour vascular density and metastatic spread. Our studies validate an interactome-based molecular strategy to interfere with transcription factor activity, for the development of novel disease therapeutics. eLife Sciences Publications, Ltd 2017-01-31 /pmc/articles/PMC5283831/ /pubmed/28137359 http://dx.doi.org/10.7554/eLife.21221 Text en © 2017, Overman et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Biochemistry and Chemical Biology
Overman, Jeroen
Fontaine, Frank
Moustaqil, Mehdi
Mittal, Deepak
Sierecki, Emma
Sacilotto, Natalia
Zuegg, Johannes
Robertson, Avril AB
Holmes, Kelly
Salim, Angela A
Mamidyala, Sreeman
Butler, Mark S
Robinson, Ashley S
Lesieur, Emmanuelle
Johnston, Wayne
Alexandrov, Kirill
Black, Brian L
Hogan, Benjamin M
De Val, Sarah
Capon, Robert J
Carroll, Jason S
Bailey, Timothy L
Koopman, Peter
Jauch, Ralf
Cooper, Matthew A
Gambin, Yann
Francois, Mathias
Pharmacological targeting of the transcription factor SOX18 delays breast cancer in mice
title Pharmacological targeting of the transcription factor SOX18 delays breast cancer in mice
title_full Pharmacological targeting of the transcription factor SOX18 delays breast cancer in mice
title_fullStr Pharmacological targeting of the transcription factor SOX18 delays breast cancer in mice
title_full_unstemmed Pharmacological targeting of the transcription factor SOX18 delays breast cancer in mice
title_short Pharmacological targeting of the transcription factor SOX18 delays breast cancer in mice
title_sort pharmacological targeting of the transcription factor sox18 delays breast cancer in mice
topic Biochemistry and Chemical Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5283831/
https://www.ncbi.nlm.nih.gov/pubmed/28137359
http://dx.doi.org/10.7554/eLife.21221
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