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Tetrahydrouridine Inhibits Cell Proliferation through Cell Cycle Regulation Regardless of Cytidine Deaminase Expression Levels

Tetrahydrouridine (THU) is a well characterized and potent inhibitor of cytidine deaminase (CDA). Highly expressed CDA catalyzes and inactivates cytidine analogues, ultimately contributing to increased gemcitabine resistance. Therefore, a combination therapy of THU and gemcitabine is considered to b...

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Autores principales: Funamizu, Naotake, Lacy, Curtis Ray, Fujita, Kaori, Furukawa, Kenei, Misawa, Takeyuki, Yanaga, Katsuhiko, Manome, Yoshinobu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3353937/
https://www.ncbi.nlm.nih.gov/pubmed/22616006
http://dx.doi.org/10.1371/journal.pone.0037424
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author Funamizu, Naotake
Lacy, Curtis Ray
Fujita, Kaori
Furukawa, Kenei
Misawa, Takeyuki
Yanaga, Katsuhiko
Manome, Yoshinobu
author_facet Funamizu, Naotake
Lacy, Curtis Ray
Fujita, Kaori
Furukawa, Kenei
Misawa, Takeyuki
Yanaga, Katsuhiko
Manome, Yoshinobu
author_sort Funamizu, Naotake
collection PubMed
description Tetrahydrouridine (THU) is a well characterized and potent inhibitor of cytidine deaminase (CDA). Highly expressed CDA catalyzes and inactivates cytidine analogues, ultimately contributing to increased gemcitabine resistance. Therefore, a combination therapy of THU and gemcitabine is considered to be a potential and promising treatment for tumors with highly expressed CDA. In this study, we found that THU has an alternative mechanism for inhibiting cell growth which is independent of CDA expression. Three different carcinoma cell lines (MIAPaCa-2, H441, and H1299) exhibited decreased cell proliferation after sole administration of THU, while being unaffected by knocking down CDA. To investigate the mechanism of THU-induced cell growth inhibition, cell cycle analysis using flow cytometry was performed. This analysis revealed that THU caused an increased rate of G1-phase occurrence while S-phase occurrence was diminished. Similarly, Ki-67 staining further supported that THU reduces cell proliferation. We also found that THU regulates cell cycle progression at the G1/S checkpoint by suppressing E2F1. As a result, a combination regimen of THU and gemcitabine might be a more effective therapy than previously believed for pancreatic carcinoma since THU works as a CDA inhibitor, as well as an inhibitor of cell growth in some types of pancreatic carcinoma cells.
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spelling pubmed-33539372012-05-21 Tetrahydrouridine Inhibits Cell Proliferation through Cell Cycle Regulation Regardless of Cytidine Deaminase Expression Levels Funamizu, Naotake Lacy, Curtis Ray Fujita, Kaori Furukawa, Kenei Misawa, Takeyuki Yanaga, Katsuhiko Manome, Yoshinobu PLoS One Research Article Tetrahydrouridine (THU) is a well characterized and potent inhibitor of cytidine deaminase (CDA). Highly expressed CDA catalyzes and inactivates cytidine analogues, ultimately contributing to increased gemcitabine resistance. Therefore, a combination therapy of THU and gemcitabine is considered to be a potential and promising treatment for tumors with highly expressed CDA. In this study, we found that THU has an alternative mechanism for inhibiting cell growth which is independent of CDA expression. Three different carcinoma cell lines (MIAPaCa-2, H441, and H1299) exhibited decreased cell proliferation after sole administration of THU, while being unaffected by knocking down CDA. To investigate the mechanism of THU-induced cell growth inhibition, cell cycle analysis using flow cytometry was performed. This analysis revealed that THU caused an increased rate of G1-phase occurrence while S-phase occurrence was diminished. Similarly, Ki-67 staining further supported that THU reduces cell proliferation. We also found that THU regulates cell cycle progression at the G1/S checkpoint by suppressing E2F1. As a result, a combination regimen of THU and gemcitabine might be a more effective therapy than previously believed for pancreatic carcinoma since THU works as a CDA inhibitor, as well as an inhibitor of cell growth in some types of pancreatic carcinoma cells. Public Library of Science 2012-05-16 /pmc/articles/PMC3353937/ /pubmed/22616006 http://dx.doi.org/10.1371/journal.pone.0037424 Text en Funamizu et al. http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Funamizu, Naotake
Lacy, Curtis Ray
Fujita, Kaori
Furukawa, Kenei
Misawa, Takeyuki
Yanaga, Katsuhiko
Manome, Yoshinobu
Tetrahydrouridine Inhibits Cell Proliferation through Cell Cycle Regulation Regardless of Cytidine Deaminase Expression Levels
title Tetrahydrouridine Inhibits Cell Proliferation through Cell Cycle Regulation Regardless of Cytidine Deaminase Expression Levels
title_full Tetrahydrouridine Inhibits Cell Proliferation through Cell Cycle Regulation Regardless of Cytidine Deaminase Expression Levels
title_fullStr Tetrahydrouridine Inhibits Cell Proliferation through Cell Cycle Regulation Regardless of Cytidine Deaminase Expression Levels
title_full_unstemmed Tetrahydrouridine Inhibits Cell Proliferation through Cell Cycle Regulation Regardless of Cytidine Deaminase Expression Levels
title_short Tetrahydrouridine Inhibits Cell Proliferation through Cell Cycle Regulation Regardless of Cytidine Deaminase Expression Levels
title_sort tetrahydrouridine inhibits cell proliferation through cell cycle regulation regardless of cytidine deaminase expression levels
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3353937/
https://www.ncbi.nlm.nih.gov/pubmed/22616006
http://dx.doi.org/10.1371/journal.pone.0037424
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