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Hypoxia regulates human lung fibroblast proliferation via p53-dependent and -independent pathways

BACKGROUND: Hypoxia induces the proliferation of lung fibroblasts in vivo and in vitro. However, the subcellular interactions between hypoxia and expression of tumor suppressor p53 and cyclin-dependent kinase inhibitors p21 and p27 remain unclear. METHODS: Normal human lung fibroblasts (NHLF) were c...

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Autores principales: Mizuno, Shiro, Bogaard, Herman J, Voelkel, Norbert F, Umeda, Yukihiro, Kadowaki, Maiko, Ameshima, Shingo, Miyamori, Isamu, Ishizaki, Takeshi
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2663549/
https://www.ncbi.nlm.nih.gov/pubmed/19267931
http://dx.doi.org/10.1186/1465-9921-10-17
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author Mizuno, Shiro
Bogaard, Herman J
Voelkel, Norbert F
Umeda, Yukihiro
Kadowaki, Maiko
Ameshima, Shingo
Miyamori, Isamu
Ishizaki, Takeshi
author_facet Mizuno, Shiro
Bogaard, Herman J
Voelkel, Norbert F
Umeda, Yukihiro
Kadowaki, Maiko
Ameshima, Shingo
Miyamori, Isamu
Ishizaki, Takeshi
author_sort Mizuno, Shiro
collection PubMed
description BACKGROUND: Hypoxia induces the proliferation of lung fibroblasts in vivo and in vitro. However, the subcellular interactions between hypoxia and expression of tumor suppressor p53 and cyclin-dependent kinase inhibitors p21 and p27 remain unclear. METHODS: Normal human lung fibroblasts (NHLF) were cultured in a hypoxic chamber or exposed to desferroxamine (DFX). DNA synthesis was measured using bromodeoxyuridine incorporation, and expression of p53, p21 and p27 was measured using real-time RT-PCR and Western blot analysis. RESULTS: DNA synthesis was increased by moderate hypoxia (2% oxygen) but was decreased by severe hypoxia (0.1% oxygen) and DFX. Moderate hypoxia decreased p21 synthesis without affecting p53 synthesis, whereas severe hypoxia and DFX increased synthesis of both p21 and p53. p27 protein expression was decreased by severe hypoxia and DFX. Gene silencing of p21 and p27 promoted DNA synthesis at ambient oxygen concentrations. p21 and p53 gene silencing lessened the decrease in DNA synthesis due to severe hypoxia or DFX exposure. p21 gene silencing prevented increased DNA synthesis in moderate hypoxia. p27 protein expression was significantly increased by p53 gene silencing, and was decreased by wild-type p53 gene transfection. CONCLUSION: These results indicate that in NHLF, severe hypoxia leads to cell cycle arrest via the p53-p21 pathway, but that moderate hypoxia enhances cell proliferation via the p21 pathway in a p53-independent manner. In addition, our results suggest that p27 may be involved in compensating for p53 in cultured NHLF proliferation.
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spelling pubmed-26635492009-04-01 Hypoxia regulates human lung fibroblast proliferation via p53-dependent and -independent pathways Mizuno, Shiro Bogaard, Herman J Voelkel, Norbert F Umeda, Yukihiro Kadowaki, Maiko Ameshima, Shingo Miyamori, Isamu Ishizaki, Takeshi Respir Res Research BACKGROUND: Hypoxia induces the proliferation of lung fibroblasts in vivo and in vitro. However, the subcellular interactions between hypoxia and expression of tumor suppressor p53 and cyclin-dependent kinase inhibitors p21 and p27 remain unclear. METHODS: Normal human lung fibroblasts (NHLF) were cultured in a hypoxic chamber or exposed to desferroxamine (DFX). DNA synthesis was measured using bromodeoxyuridine incorporation, and expression of p53, p21 and p27 was measured using real-time RT-PCR and Western blot analysis. RESULTS: DNA synthesis was increased by moderate hypoxia (2% oxygen) but was decreased by severe hypoxia (0.1% oxygen) and DFX. Moderate hypoxia decreased p21 synthesis without affecting p53 synthesis, whereas severe hypoxia and DFX increased synthesis of both p21 and p53. p27 protein expression was decreased by severe hypoxia and DFX. Gene silencing of p21 and p27 promoted DNA synthesis at ambient oxygen concentrations. p21 and p53 gene silencing lessened the decrease in DNA synthesis due to severe hypoxia or DFX exposure. p21 gene silencing prevented increased DNA synthesis in moderate hypoxia. p27 protein expression was significantly increased by p53 gene silencing, and was decreased by wild-type p53 gene transfection. CONCLUSION: These results indicate that in NHLF, severe hypoxia leads to cell cycle arrest via the p53-p21 pathway, but that moderate hypoxia enhances cell proliferation via the p21 pathway in a p53-independent manner. In addition, our results suggest that p27 may be involved in compensating for p53 in cultured NHLF proliferation. BioMed Central 2009 2009-03-06 /pmc/articles/PMC2663549/ /pubmed/19267931 http://dx.doi.org/10.1186/1465-9921-10-17 Text en Copyright © 2009 Mizuno et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Mizuno, Shiro
Bogaard, Herman J
Voelkel, Norbert F
Umeda, Yukihiro
Kadowaki, Maiko
Ameshima, Shingo
Miyamori, Isamu
Ishizaki, Takeshi
Hypoxia regulates human lung fibroblast proliferation via p53-dependent and -independent pathways
title Hypoxia regulates human lung fibroblast proliferation via p53-dependent and -independent pathways
title_full Hypoxia regulates human lung fibroblast proliferation via p53-dependent and -independent pathways
title_fullStr Hypoxia regulates human lung fibroblast proliferation via p53-dependent and -independent pathways
title_full_unstemmed Hypoxia regulates human lung fibroblast proliferation via p53-dependent and -independent pathways
title_short Hypoxia regulates human lung fibroblast proliferation via p53-dependent and -independent pathways
title_sort hypoxia regulates human lung fibroblast proliferation via p53-dependent and -independent pathways
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2663549/
https://www.ncbi.nlm.nih.gov/pubmed/19267931
http://dx.doi.org/10.1186/1465-9921-10-17
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