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Array-based genome-wide RNAi screening to identify shRNAs that enhance p53-related apoptosis in human cancer cells

p53 transduction is a potentially effective cancer therapy but does not result in a good therapeutic response in all human cancers due to resistance to apoptosis. To discover factors that overcome resistance to p53-induced apoptosis, we attempted to identify RNAi sequences that enhance p53-induced a...

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Autores principales: Idogawa, Masashi, Ohashi, Tomoko, Sugisaka, Jun, Sasaki, Yasushi, Suzuki, Hiromu, Tokino, Takashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4202142/
https://www.ncbi.nlm.nih.gov/pubmed/25277188
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author Idogawa, Masashi
Ohashi, Tomoko
Sugisaka, Jun
Sasaki, Yasushi
Suzuki, Hiromu
Tokino, Takashi
author_facet Idogawa, Masashi
Ohashi, Tomoko
Sugisaka, Jun
Sasaki, Yasushi
Suzuki, Hiromu
Tokino, Takashi
author_sort Idogawa, Masashi
collection PubMed
description p53 transduction is a potentially effective cancer therapy but does not result in a good therapeutic response in all human cancers due to resistance to apoptosis. To discover factors that overcome resistance to p53-induced apoptosis, we attempted to identify RNAi sequences that enhance p53-induced apoptosis. We screened a genome-wide lentiviral shRNA library in liver cancer Huh-7 and pancreatic cancer Panc-1 cells, both of which resist p53-induced apoptosis. After the infection of adenovirus expressing p53 or LacZ as a control, shRNA-treated populations were analyzed by microarray. We identified shRNAs that were significantly decreased in p53-infected cells compared with control cells. Among these shRNAs, shRNA-58335 was markedly decreased in both cancer cell lines tested. shRNA-58335 enhanced p53-related apoptosis in vitro and augmented the inhibitory effect of adenoviral p53 transduction on tumor growth in vivo. Furthermore, the enhanced apoptotic response by shRNA-58335 was also confirmed by treatment with PRIMA-1, which reactivates mutant p53, instead of adenoviral p53 transduction. We found that shRNA-58335 evokes the apoptotic response following p53 transduction or functional restoration of p53 with a small molecule drug in cancer cells resistant to p53-induced apoptosis. The combination of p53 restoration and RNAi-based drugs is expected to be a promising novel cancer therapy.
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spelling pubmed-42021422014-10-21 Array-based genome-wide RNAi screening to identify shRNAs that enhance p53-related apoptosis in human cancer cells Idogawa, Masashi Ohashi, Tomoko Sugisaka, Jun Sasaki, Yasushi Suzuki, Hiromu Tokino, Takashi Oncotarget Research Paper p53 transduction is a potentially effective cancer therapy but does not result in a good therapeutic response in all human cancers due to resistance to apoptosis. To discover factors that overcome resistance to p53-induced apoptosis, we attempted to identify RNAi sequences that enhance p53-induced apoptosis. We screened a genome-wide lentiviral shRNA library in liver cancer Huh-7 and pancreatic cancer Panc-1 cells, both of which resist p53-induced apoptosis. After the infection of adenovirus expressing p53 or LacZ as a control, shRNA-treated populations were analyzed by microarray. We identified shRNAs that were significantly decreased in p53-infected cells compared with control cells. Among these shRNAs, shRNA-58335 was markedly decreased in both cancer cell lines tested. shRNA-58335 enhanced p53-related apoptosis in vitro and augmented the inhibitory effect of adenoviral p53 transduction on tumor growth in vivo. Furthermore, the enhanced apoptotic response by shRNA-58335 was also confirmed by treatment with PRIMA-1, which reactivates mutant p53, instead of adenoviral p53 transduction. We found that shRNA-58335 evokes the apoptotic response following p53 transduction or functional restoration of p53 with a small molecule drug in cancer cells resistant to p53-induced apoptosis. The combination of p53 restoration and RNAi-based drugs is expected to be a promising novel cancer therapy. Impact Journals LLC 2014-07-27 /pmc/articles/PMC4202142/ /pubmed/25277188 Text en Copyright: © 2014 Idogawa 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
Idogawa, Masashi
Ohashi, Tomoko
Sugisaka, Jun
Sasaki, Yasushi
Suzuki, Hiromu
Tokino, Takashi
Array-based genome-wide RNAi screening to identify shRNAs that enhance p53-related apoptosis in human cancer cells
title Array-based genome-wide RNAi screening to identify shRNAs that enhance p53-related apoptosis in human cancer cells
title_full Array-based genome-wide RNAi screening to identify shRNAs that enhance p53-related apoptosis in human cancer cells
title_fullStr Array-based genome-wide RNAi screening to identify shRNAs that enhance p53-related apoptosis in human cancer cells
title_full_unstemmed Array-based genome-wide RNAi screening to identify shRNAs that enhance p53-related apoptosis in human cancer cells
title_short Array-based genome-wide RNAi screening to identify shRNAs that enhance p53-related apoptosis in human cancer cells
title_sort array-based genome-wide rnai screening to identify shrnas that enhance p53-related apoptosis in human cancer cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4202142/
https://www.ncbi.nlm.nih.gov/pubmed/25277188
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