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Quinazoline Ligands Induce Cancer Cell Death through Selective STAT3 Inhibition and G-Quadruplex Stabilization

[Image: see text] The signal transducer and activator of transcription 3 (STAT3) protein is a master regulator of most key hallmarks and enablers of cancer, including cell proliferation and the response to DNA damage. G-Quadruplex (G4) structures are four-stranded noncanonical DNA structures enriche...

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Autores principales: Jamroskovic, Jan, Doimo, Mara, Chand, Karam, Obi, Ikenna, Kumar, Rajendra, Brännström, Kristoffer, Hedenström, Mattias, Nath Das, Rabindra, Akhunzianov, Almaz, Deiana, Marco, Kasho, Kazutoshi, Sulis Sato, Sebastian, Pourbozorgi, Parham L., Mason, James E., Medini, Paolo, Öhlund, Daniel, Wanrooij, Sjoerd, Chorell, Erik, Sabouri, Nasim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2020
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7307907/
https://www.ncbi.nlm.nih.gov/pubmed/31990532
http://dx.doi.org/10.1021/jacs.9b11232
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author Jamroskovic, Jan
Doimo, Mara
Chand, Karam
Obi, Ikenna
Kumar, Rajendra
Brännström, Kristoffer
Hedenström, Mattias
Nath Das, Rabindra
Akhunzianov, Almaz
Deiana, Marco
Kasho, Kazutoshi
Sulis Sato, Sebastian
Pourbozorgi, Parham L.
Mason, James E.
Medini, Paolo
Öhlund, Daniel
Wanrooij, Sjoerd
Chorell, Erik
Sabouri, Nasim
author_facet Jamroskovic, Jan
Doimo, Mara
Chand, Karam
Obi, Ikenna
Kumar, Rajendra
Brännström, Kristoffer
Hedenström, Mattias
Nath Das, Rabindra
Akhunzianov, Almaz
Deiana, Marco
Kasho, Kazutoshi
Sulis Sato, Sebastian
Pourbozorgi, Parham L.
Mason, James E.
Medini, Paolo
Öhlund, Daniel
Wanrooij, Sjoerd
Chorell, Erik
Sabouri, Nasim
author_sort Jamroskovic, Jan
collection PubMed
description [Image: see text] The signal transducer and activator of transcription 3 (STAT3) protein is a master regulator of most key hallmarks and enablers of cancer, including cell proliferation and the response to DNA damage. G-Quadruplex (G4) structures are four-stranded noncanonical DNA structures enriched at telomeres and oncogenes’ promoters. In cancer cells, stabilization of G4 DNAs leads to replication stress and DNA damage accumulation and is therefore considered a promising target for oncotherapy. Here, we designed and synthesized novel quinazoline-based compounds that simultaneously and selectively affect these two well-recognized cancer targets, G4 DNA structures and the STAT3 protein. Using a combination of in vitro assays, NMR, and molecular dynamics simulations, we show that these small, uncharged compounds not only bind to the STAT3 protein but also stabilize G4 structures. In human cultured cells, the compounds inhibit phosphorylation-dependent activation of STAT3 without affecting the antiapoptotic factor STAT1 and cause increased formation of G4 structures, as revealed by the use of a G4 DNA-specific antibody. As a result, treated cells show slower DNA replication, DNA damage checkpoint activation, and an increased apoptotic rate. Importantly, cancer cells are more sensitive to these molecules compared to noncancerous cell lines. This is the first report of a promising class of compounds that not only targets the DNA damage cancer response machinery but also simultaneously inhibits the STAT3-induced cancer cell proliferation, demonstrating a novel approach in cancer therapy.
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spelling pubmed-73079072020-06-23 Quinazoline Ligands Induce Cancer Cell Death through Selective STAT3 Inhibition and G-Quadruplex Stabilization Jamroskovic, Jan Doimo, Mara Chand, Karam Obi, Ikenna Kumar, Rajendra Brännström, Kristoffer Hedenström, Mattias Nath Das, Rabindra Akhunzianov, Almaz Deiana, Marco Kasho, Kazutoshi Sulis Sato, Sebastian Pourbozorgi, Parham L. Mason, James E. Medini, Paolo Öhlund, Daniel Wanrooij, Sjoerd Chorell, Erik Sabouri, Nasim J Am Chem Soc [Image: see text] The signal transducer and activator of transcription 3 (STAT3) protein is a master regulator of most key hallmarks and enablers of cancer, including cell proliferation and the response to DNA damage. G-Quadruplex (G4) structures are four-stranded noncanonical DNA structures enriched at telomeres and oncogenes’ promoters. In cancer cells, stabilization of G4 DNAs leads to replication stress and DNA damage accumulation and is therefore considered a promising target for oncotherapy. Here, we designed and synthesized novel quinazoline-based compounds that simultaneously and selectively affect these two well-recognized cancer targets, G4 DNA structures and the STAT3 protein. Using a combination of in vitro assays, NMR, and molecular dynamics simulations, we show that these small, uncharged compounds not only bind to the STAT3 protein but also stabilize G4 structures. In human cultured cells, the compounds inhibit phosphorylation-dependent activation of STAT3 without affecting the antiapoptotic factor STAT1 and cause increased formation of G4 structures, as revealed by the use of a G4 DNA-specific antibody. As a result, treated cells show slower DNA replication, DNA damage checkpoint activation, and an increased apoptotic rate. Importantly, cancer cells are more sensitive to these molecules compared to noncancerous cell lines. This is the first report of a promising class of compounds that not only targets the DNA damage cancer response machinery but also simultaneously inhibits the STAT3-induced cancer cell proliferation, demonstrating a novel approach in cancer therapy. American Chemical Society 2020-01-28 2020-02-12 /pmc/articles/PMC7307907/ /pubmed/31990532 http://dx.doi.org/10.1021/jacs.9b11232 Text en Copyright © 2020 American Chemical Society This is an open access article published under a Creative Commons Attribution (CC-BY) License (http://pubs.acs.org/page/policy/authorchoice_ccby_termsofuse.html) , which permits unrestricted use, distribution and reproduction in any medium, provided the author and source are cited.
spellingShingle Jamroskovic, Jan
Doimo, Mara
Chand, Karam
Obi, Ikenna
Kumar, Rajendra
Brännström, Kristoffer
Hedenström, Mattias
Nath Das, Rabindra
Akhunzianov, Almaz
Deiana, Marco
Kasho, Kazutoshi
Sulis Sato, Sebastian
Pourbozorgi, Parham L.
Mason, James E.
Medini, Paolo
Öhlund, Daniel
Wanrooij, Sjoerd
Chorell, Erik
Sabouri, Nasim
Quinazoline Ligands Induce Cancer Cell Death through Selective STAT3 Inhibition and G-Quadruplex Stabilization
title Quinazoline Ligands Induce Cancer Cell Death through Selective STAT3 Inhibition and G-Quadruplex Stabilization
title_full Quinazoline Ligands Induce Cancer Cell Death through Selective STAT3 Inhibition and G-Quadruplex Stabilization
title_fullStr Quinazoline Ligands Induce Cancer Cell Death through Selective STAT3 Inhibition and G-Quadruplex Stabilization
title_full_unstemmed Quinazoline Ligands Induce Cancer Cell Death through Selective STAT3 Inhibition and G-Quadruplex Stabilization
title_short Quinazoline Ligands Induce Cancer Cell Death through Selective STAT3 Inhibition and G-Quadruplex Stabilization
title_sort quinazoline ligands induce cancer cell death through selective stat3 inhibition and g-quadruplex stabilization
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7307907/
https://www.ncbi.nlm.nih.gov/pubmed/31990532
http://dx.doi.org/10.1021/jacs.9b11232
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