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Inducing cellular senescence in vitro by using genetically encoded photosensitizers

Cellular senescence, a form of cell cycle arrest, is one of the cellular responses to different types of exogenous and endogenous damage. The senescence phenotype can be induced in vitro by oncogene overexpression and/or DNA damage. Recently, we have reported a novel mechanism of cellular senescence...

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Autores principales: Petrova, Nadezhda V., Luzhin, Artem V., Serebrovskaya, Ekaterina O., Ryumina, Alina P., Velichko, Artem K., Razin, Sergey V., Kantidze, Omar L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5115900/
https://www.ncbi.nlm.nih.gov/pubmed/27744420
http://dx.doi.org/10.18632/aging.101065
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author Petrova, Nadezhda V.
Luzhin, Artem V.
Serebrovskaya, Ekaterina O.
Ryumina, Alina P.
Velichko, Artem K.
Razin, Sergey V.
Kantidze, Omar L.
author_facet Petrova, Nadezhda V.
Luzhin, Artem V.
Serebrovskaya, Ekaterina O.
Ryumina, Alina P.
Velichko, Artem K.
Razin, Sergey V.
Kantidze, Omar L.
author_sort Petrova, Nadezhda V.
collection PubMed
description Cellular senescence, a form of cell cycle arrest, is one of the cellular responses to different types of exogenous and endogenous damage. The senescence phenotype can be induced in vitro by oncogene overexpression and/or DNA damage. Recently, we have reported a novel mechanism of cellular senescence induction by mild genotoxic stress. Specifically, we have shown that the formation of a small number of DNA lesions in normal and cancer cells during S phase leads to cellular senescence-like arrest within the same cell cycle. Here, based on this mechanism, we suggest an approach to remotely induce premature senescence in human cell cultures using short-term light irradiation. We used the genetically encoded photosensitizers, tandem KillerRed and miniSOG, targeted to chromatin by fusion to core histone H2B to induce moderate levels of DNA damage by light in S phase cells. We showed that the cells that express the H2B-fused photosensitizers acquire a senescence phenotype upon illumination with the appropriate light source. Furthermore, we demonstrated that both chromatin-targeted tandem KillerRed (produces O(2)(−)) and miniSOG (produces (1)O(2)) induce single-stranded DNA breaks upon light illumination. Interestingly, miniSOG was also able to induce double-stranded DNA breaks.
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spelling pubmed-51159002016-11-29 Inducing cellular senescence in vitro by using genetically encoded photosensitizers Petrova, Nadezhda V. Luzhin, Artem V. Serebrovskaya, Ekaterina O. Ryumina, Alina P. Velichko, Artem K. Razin, Sergey V. Kantidze, Omar L. Aging (Albany NY) Research Paper Cellular senescence, a form of cell cycle arrest, is one of the cellular responses to different types of exogenous and endogenous damage. The senescence phenotype can be induced in vitro by oncogene overexpression and/or DNA damage. Recently, we have reported a novel mechanism of cellular senescence induction by mild genotoxic stress. Specifically, we have shown that the formation of a small number of DNA lesions in normal and cancer cells during S phase leads to cellular senescence-like arrest within the same cell cycle. Here, based on this mechanism, we suggest an approach to remotely induce premature senescence in human cell cultures using short-term light irradiation. We used the genetically encoded photosensitizers, tandem KillerRed and miniSOG, targeted to chromatin by fusion to core histone H2B to induce moderate levels of DNA damage by light in S phase cells. We showed that the cells that express the H2B-fused photosensitizers acquire a senescence phenotype upon illumination with the appropriate light source. Furthermore, we demonstrated that both chromatin-targeted tandem KillerRed (produces O(2)(−)) and miniSOG (produces (1)O(2)) induce single-stranded DNA breaks upon light illumination. Interestingly, miniSOG was also able to induce double-stranded DNA breaks. Impact Journals LLC 2016-10-14 /pmc/articles/PMC5115900/ /pubmed/27744420 http://dx.doi.org/10.18632/aging.101065 Text en Copyright: © 2016 Petrova et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Petrova, Nadezhda V.
Luzhin, Artem V.
Serebrovskaya, Ekaterina O.
Ryumina, Alina P.
Velichko, Artem K.
Razin, Sergey V.
Kantidze, Omar L.
Inducing cellular senescence in vitro by using genetically encoded photosensitizers
title Inducing cellular senescence in vitro by using genetically encoded photosensitizers
title_full Inducing cellular senescence in vitro by using genetically encoded photosensitizers
title_fullStr Inducing cellular senescence in vitro by using genetically encoded photosensitizers
title_full_unstemmed Inducing cellular senescence in vitro by using genetically encoded photosensitizers
title_short Inducing cellular senescence in vitro by using genetically encoded photosensitizers
title_sort inducing cellular senescence in vitro by using genetically encoded photosensitizers
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5115900/
https://www.ncbi.nlm.nih.gov/pubmed/27744420
http://dx.doi.org/10.18632/aging.101065
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