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BK Polyomavirus Activates HSF1 Stimulating Human Kidney Hek293 Cell Proliferation

OBJECTIVES: Some DNA viruses, such as BKPyV, are capable of inducing neoplastic transformation in human tissues through still unclear mechanisms. The goal of this study is to investigate the carcinogenic potential of BK polyomavirus (BKPyV) in human embryonic kidney 293 (Hek293) cells, dissecting th...

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Autores principales: Baldelli, Sara, Limongi, Dolores, Coni, Cristiana, Ciccarone, Fabio, Ciotti, Marco, Checconi, Paola, Palamara, Anna Teresa, Ciriolo, Maria Rosa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8627348/
https://www.ncbi.nlm.nih.gov/pubmed/34845419
http://dx.doi.org/10.1155/2021/9176993
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author Baldelli, Sara
Limongi, Dolores
Coni, Cristiana
Ciccarone, Fabio
Ciotti, Marco
Checconi, Paola
Palamara, Anna Teresa
Ciriolo, Maria Rosa
author_facet Baldelli, Sara
Limongi, Dolores
Coni, Cristiana
Ciccarone, Fabio
Ciotti, Marco
Checconi, Paola
Palamara, Anna Teresa
Ciriolo, Maria Rosa
author_sort Baldelli, Sara
collection PubMed
description OBJECTIVES: Some DNA viruses, such as BKPyV, are capable of inducing neoplastic transformation in human tissues through still unclear mechanisms. The goal of this study is to investigate the carcinogenic potential of BK polyomavirus (BKPyV) in human embryonic kidney 293 (Hek293) cells, dissecting the molecular mechanism that determines the neoplastic transformation. MATERIALS AND METHODS: BKPyV, isolated from urine samples of infected patients, was used to infect monolayers of Hek293 cells. Subsequently, intracellular redox changes, GSH/GSSH concentration by HPLC, and reactive oxygen/nitrogen species (ROS/RNS) production were monitored. Moreover, to understand the signaling pathway underlying the neoplastic transformation, the redox-sensitive HFS1-Hsp27 molecular axis was examined using the flavonoid quercetin and polishort hairpin RNA technologies. RESULTS: The data obtained show that while BKPyV replication is closely linked to the transcription factor p53, the increase in Hek293 cell proliferation is due to the activation of the signaling pathway mediated by HSF1-Hsp27. In fact, its inhibition blocks viral replication and cell growth, respectively. CONCLUSIONS: The HSF1-Hsp27 signaling pathway is involved in BKPyV infection and cellular replication and its activation, which could be involved in cell transformation.
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spelling pubmed-86273482021-11-28 BK Polyomavirus Activates HSF1 Stimulating Human Kidney Hek293 Cell Proliferation Baldelli, Sara Limongi, Dolores Coni, Cristiana Ciccarone, Fabio Ciotti, Marco Checconi, Paola Palamara, Anna Teresa Ciriolo, Maria Rosa Oxid Med Cell Longev Research Article OBJECTIVES: Some DNA viruses, such as BKPyV, are capable of inducing neoplastic transformation in human tissues through still unclear mechanisms. The goal of this study is to investigate the carcinogenic potential of BK polyomavirus (BKPyV) in human embryonic kidney 293 (Hek293) cells, dissecting the molecular mechanism that determines the neoplastic transformation. MATERIALS AND METHODS: BKPyV, isolated from urine samples of infected patients, was used to infect monolayers of Hek293 cells. Subsequently, intracellular redox changes, GSH/GSSH concentration by HPLC, and reactive oxygen/nitrogen species (ROS/RNS) production were monitored. Moreover, to understand the signaling pathway underlying the neoplastic transformation, the redox-sensitive HFS1-Hsp27 molecular axis was examined using the flavonoid quercetin and polishort hairpin RNA technologies. RESULTS: The data obtained show that while BKPyV replication is closely linked to the transcription factor p53, the increase in Hek293 cell proliferation is due to the activation of the signaling pathway mediated by HSF1-Hsp27. In fact, its inhibition blocks viral replication and cell growth, respectively. CONCLUSIONS: The HSF1-Hsp27 signaling pathway is involved in BKPyV infection and cellular replication and its activation, which could be involved in cell transformation. Hindawi 2021-11-20 /pmc/articles/PMC8627348/ /pubmed/34845419 http://dx.doi.org/10.1155/2021/9176993 Text en Copyright © 2021 Sara Baldelli et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Baldelli, Sara
Limongi, Dolores
Coni, Cristiana
Ciccarone, Fabio
Ciotti, Marco
Checconi, Paola
Palamara, Anna Teresa
Ciriolo, Maria Rosa
BK Polyomavirus Activates HSF1 Stimulating Human Kidney Hek293 Cell Proliferation
title BK Polyomavirus Activates HSF1 Stimulating Human Kidney Hek293 Cell Proliferation
title_full BK Polyomavirus Activates HSF1 Stimulating Human Kidney Hek293 Cell Proliferation
title_fullStr BK Polyomavirus Activates HSF1 Stimulating Human Kidney Hek293 Cell Proliferation
title_full_unstemmed BK Polyomavirus Activates HSF1 Stimulating Human Kidney Hek293 Cell Proliferation
title_short BK Polyomavirus Activates HSF1 Stimulating Human Kidney Hek293 Cell Proliferation
title_sort bk polyomavirus activates hsf1 stimulating human kidney hek293 cell proliferation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8627348/
https://www.ncbi.nlm.nih.gov/pubmed/34845419
http://dx.doi.org/10.1155/2021/9176993
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