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A new G-quadruplex-specific photosensitizer inducing genome instability in cancer cells by triggering oxidative DNA damage and impeding replication fork progression

Photodynamic therapy (PDT) ideally relies on the administration, selective accumulation and photoactivation of a photosensitizer (PS) into diseased tissues. In this context, we report a new heavy-atom-free fluorescent G-quadruplex (G4) DNA-binding PS, named DBI. We reveal by fluorescence microscopy...

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Autores principales: Deiana, Marco, Andrés Castán, José María, Josse, Pierre, Kahsay, Abraha, Sánchez, Darío Puchán, Morice, Korentin, Gillet, Natacha, Ravindranath, Ranjitha, Patel, Ankit Kumar, Sengupta, Pallabi, Obi, Ikenna, Rodriguez-Marquez, Eva, Khrouz, Lhoussain, Dumont, Elise, Abad Galán, Laura, Allain, Magali, Walker, Bright, Ahn, Hyun Seo, Maury, Olivier, Blanchard, Philippe, Le Bahers, Tangui, Öhlund, Daniel, von Hofsten, Jonas, Monnereau, Cyrille, Cabanetos, Clément, Sabouri, Nasim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10325911/
https://www.ncbi.nlm.nih.gov/pubmed/37191066
http://dx.doi.org/10.1093/nar/gkad365
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author Deiana, Marco
Andrés Castán, José María
Josse, Pierre
Kahsay, Abraha
Sánchez, Darío Puchán
Morice, Korentin
Gillet, Natacha
Ravindranath, Ranjitha
Patel, Ankit Kumar
Sengupta, Pallabi
Obi, Ikenna
Rodriguez-Marquez, Eva
Khrouz, Lhoussain
Dumont, Elise
Abad Galán, Laura
Allain, Magali
Walker, Bright
Ahn, Hyun Seo
Maury, Olivier
Blanchard, Philippe
Le Bahers, Tangui
Öhlund, Daniel
von Hofsten, Jonas
Monnereau, Cyrille
Cabanetos, Clément
Sabouri, Nasim
author_facet Deiana, Marco
Andrés Castán, José María
Josse, Pierre
Kahsay, Abraha
Sánchez, Darío Puchán
Morice, Korentin
Gillet, Natacha
Ravindranath, Ranjitha
Patel, Ankit Kumar
Sengupta, Pallabi
Obi, Ikenna
Rodriguez-Marquez, Eva
Khrouz, Lhoussain
Dumont, Elise
Abad Galán, Laura
Allain, Magali
Walker, Bright
Ahn, Hyun Seo
Maury, Olivier
Blanchard, Philippe
Le Bahers, Tangui
Öhlund, Daniel
von Hofsten, Jonas
Monnereau, Cyrille
Cabanetos, Clément
Sabouri, Nasim
author_sort Deiana, Marco
collection PubMed
description Photodynamic therapy (PDT) ideally relies on the administration, selective accumulation and photoactivation of a photosensitizer (PS) into diseased tissues. In this context, we report a new heavy-atom-free fluorescent G-quadruplex (G4) DNA-binding PS, named DBI. We reveal by fluorescence microscopy that DBI preferentially localizes in intraluminal vesicles (ILVs), precursors of exosomes, which are key components of cancer cell proliferation. Moreover, purified exosomal DNA was recognized by a G4-specific antibody, thus highlighting the presence of such G4-forming sequences in the vesicles. Despite the absence of fluorescence signal from DBI in nuclei, light-irradiated DBI-treated cells generated reactive oxygen species (ROS), triggering a 3-fold increase of nuclear G4 foci, slowing fork progression and elevated levels of both DNA base damage, 8-oxoguanine, and double-stranded DNA breaks. Consequently, DBI was found to exert significant phototoxic effects (at nanomolar scale) toward cancer cell lines and tumor organoids. Furthermore, in vivo testing reveals that photoactivation of DBI induces not only G4 formation and DNA damage but also apoptosis in zebrafish, specifically in the area where DBI had accumulated. Collectively, this approach shows significant promise for image-guided PDT.
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spelling pubmed-103259112023-07-08 A new G-quadruplex-specific photosensitizer inducing genome instability in cancer cells by triggering oxidative DNA damage and impeding replication fork progression Deiana, Marco Andrés Castán, José María Josse, Pierre Kahsay, Abraha Sánchez, Darío Puchán Morice, Korentin Gillet, Natacha Ravindranath, Ranjitha Patel, Ankit Kumar Sengupta, Pallabi Obi, Ikenna Rodriguez-Marquez, Eva Khrouz, Lhoussain Dumont, Elise Abad Galán, Laura Allain, Magali Walker, Bright Ahn, Hyun Seo Maury, Olivier Blanchard, Philippe Le Bahers, Tangui Öhlund, Daniel von Hofsten, Jonas Monnereau, Cyrille Cabanetos, Clément Sabouri, Nasim Nucleic Acids Res Genome Integrity, Repair and Replication Photodynamic therapy (PDT) ideally relies on the administration, selective accumulation and photoactivation of a photosensitizer (PS) into diseased tissues. In this context, we report a new heavy-atom-free fluorescent G-quadruplex (G4) DNA-binding PS, named DBI. We reveal by fluorescence microscopy that DBI preferentially localizes in intraluminal vesicles (ILVs), precursors of exosomes, which are key components of cancer cell proliferation. Moreover, purified exosomal DNA was recognized by a G4-specific antibody, thus highlighting the presence of such G4-forming sequences in the vesicles. Despite the absence of fluorescence signal from DBI in nuclei, light-irradiated DBI-treated cells generated reactive oxygen species (ROS), triggering a 3-fold increase of nuclear G4 foci, slowing fork progression and elevated levels of both DNA base damage, 8-oxoguanine, and double-stranded DNA breaks. Consequently, DBI was found to exert significant phototoxic effects (at nanomolar scale) toward cancer cell lines and tumor organoids. Furthermore, in vivo testing reveals that photoactivation of DBI induces not only G4 formation and DNA damage but also apoptosis in zebrafish, specifically in the area where DBI had accumulated. Collectively, this approach shows significant promise for image-guided PDT. Oxford University Press 2023-05-16 /pmc/articles/PMC10325911/ /pubmed/37191066 http://dx.doi.org/10.1093/nar/gkad365 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Genome Integrity, Repair and Replication
Deiana, Marco
Andrés Castán, José María
Josse, Pierre
Kahsay, Abraha
Sánchez, Darío Puchán
Morice, Korentin
Gillet, Natacha
Ravindranath, Ranjitha
Patel, Ankit Kumar
Sengupta, Pallabi
Obi, Ikenna
Rodriguez-Marquez, Eva
Khrouz, Lhoussain
Dumont, Elise
Abad Galán, Laura
Allain, Magali
Walker, Bright
Ahn, Hyun Seo
Maury, Olivier
Blanchard, Philippe
Le Bahers, Tangui
Öhlund, Daniel
von Hofsten, Jonas
Monnereau, Cyrille
Cabanetos, Clément
Sabouri, Nasim
A new G-quadruplex-specific photosensitizer inducing genome instability in cancer cells by triggering oxidative DNA damage and impeding replication fork progression
title A new G-quadruplex-specific photosensitizer inducing genome instability in cancer cells by triggering oxidative DNA damage and impeding replication fork progression
title_full A new G-quadruplex-specific photosensitizer inducing genome instability in cancer cells by triggering oxidative DNA damage and impeding replication fork progression
title_fullStr A new G-quadruplex-specific photosensitizer inducing genome instability in cancer cells by triggering oxidative DNA damage and impeding replication fork progression
title_full_unstemmed A new G-quadruplex-specific photosensitizer inducing genome instability in cancer cells by triggering oxidative DNA damage and impeding replication fork progression
title_short A new G-quadruplex-specific photosensitizer inducing genome instability in cancer cells by triggering oxidative DNA damage and impeding replication fork progression
title_sort new g-quadruplex-specific photosensitizer inducing genome instability in cancer cells by triggering oxidative dna damage and impeding replication fork progression
topic Genome Integrity, Repair and Replication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10325911/
https://www.ncbi.nlm.nih.gov/pubmed/37191066
http://dx.doi.org/10.1093/nar/gkad365
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