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The ARF Tumor Suppressor Regulates Bone Remodeling and Osteosarcoma Development in Mice

The ARF tumor suppressor regulates p53 as well as basic developmental processes independent of p53, including osteoclast activation, by controlling ribosomal biogenesis. Here we provide evidence that ARF is a master regulator of bone remodeling and osteosarcoma (OS) development in mice. Arf(-/-) mic...

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Autores principales: Rauch, Daniel A., Hurchla, Michelle A., Harding, John C., Deng, Hongju, Shea, Lauren K., Eagleton, Mark C., Niewiesk, Stefan, Lairmore, Michael D., Piwnica-Worms, David, Rosol, Thomas J., Weber, Jason D., Ratner, Lee, Weilbaecher, Katherine N.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3012707/
https://www.ncbi.nlm.nih.gov/pubmed/21209895
http://dx.doi.org/10.1371/journal.pone.0015755
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author Rauch, Daniel A.
Hurchla, Michelle A.
Harding, John C.
Deng, Hongju
Shea, Lauren K.
Eagleton, Mark C.
Niewiesk, Stefan
Lairmore, Michael D.
Piwnica-Worms, David
Rosol, Thomas J.
Weber, Jason D.
Ratner, Lee
Weilbaecher, Katherine N.
author_facet Rauch, Daniel A.
Hurchla, Michelle A.
Harding, John C.
Deng, Hongju
Shea, Lauren K.
Eagleton, Mark C.
Niewiesk, Stefan
Lairmore, Michael D.
Piwnica-Worms, David
Rosol, Thomas J.
Weber, Jason D.
Ratner, Lee
Weilbaecher, Katherine N.
author_sort Rauch, Daniel A.
collection PubMed
description The ARF tumor suppressor regulates p53 as well as basic developmental processes independent of p53, including osteoclast activation, by controlling ribosomal biogenesis. Here we provide evidence that ARF is a master regulator of bone remodeling and osteosarcoma (OS) development in mice. Arf(-/-) mice displayed increased osteoblast (OB) and osteoclast (OC) activity with a significant net increase in trabecular bone volume. The long bones of Arf(-/-) mice had increased expression of OB genes while Arf(-/-) OB showed enhanced differentiation in vitro. Mice transgenic for the Tax oncogene develop lymphocytic tumors with associated osteolytic lesions, while Tax+Arf(-/-) mice uniformly developed spontaneous OS by 7 months of age. Tax+Arf(-/-) tumors were well differentiated OS characterized by an abundance of new bone with OC recruitment, expressed OB markers and displayed intact levels of p53 mRNA and reduced Rb transcript levels. Cell lines established from OS recapitulated characteristics of the primary tumor, including the expression of mature OB markers and ability to form mineralized tumors when transplanted. Loss of heterozygosity in OS tumors arising in Tax+Arf(+/-) mice emphasized the necessity of ARF-loss in OS development. Hypothesizing that inhibition of ARF-regulated bone remodeling would repress development of OS, we demonstrated that treatment of Tax+Arf(-/-) mice with zoledronic acid, a bisphosphonate inhibitor of OC activity and repressor of bone turnover, prevented or delayed the onset of OS. These data describe a novel role for ARF as a regulator of bone remodeling through effects on both OB and OC. Finally, these data underscore the potential of targeting bone remodeling as adjuvant therapy or in patients with genetic predispositions to prevent the development of OS.
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spelling pubmed-30127072011-01-05 The ARF Tumor Suppressor Regulates Bone Remodeling and Osteosarcoma Development in Mice Rauch, Daniel A. Hurchla, Michelle A. Harding, John C. Deng, Hongju Shea, Lauren K. Eagleton, Mark C. Niewiesk, Stefan Lairmore, Michael D. Piwnica-Worms, David Rosol, Thomas J. Weber, Jason D. Ratner, Lee Weilbaecher, Katherine N. PLoS One Research Article The ARF tumor suppressor regulates p53 as well as basic developmental processes independent of p53, including osteoclast activation, by controlling ribosomal biogenesis. Here we provide evidence that ARF is a master regulator of bone remodeling and osteosarcoma (OS) development in mice. Arf(-/-) mice displayed increased osteoblast (OB) and osteoclast (OC) activity with a significant net increase in trabecular bone volume. The long bones of Arf(-/-) mice had increased expression of OB genes while Arf(-/-) OB showed enhanced differentiation in vitro. Mice transgenic for the Tax oncogene develop lymphocytic tumors with associated osteolytic lesions, while Tax+Arf(-/-) mice uniformly developed spontaneous OS by 7 months of age. Tax+Arf(-/-) tumors were well differentiated OS characterized by an abundance of new bone with OC recruitment, expressed OB markers and displayed intact levels of p53 mRNA and reduced Rb transcript levels. Cell lines established from OS recapitulated characteristics of the primary tumor, including the expression of mature OB markers and ability to form mineralized tumors when transplanted. Loss of heterozygosity in OS tumors arising in Tax+Arf(+/-) mice emphasized the necessity of ARF-loss in OS development. Hypothesizing that inhibition of ARF-regulated bone remodeling would repress development of OS, we demonstrated that treatment of Tax+Arf(-/-) mice with zoledronic acid, a bisphosphonate inhibitor of OC activity and repressor of bone turnover, prevented or delayed the onset of OS. These data describe a novel role for ARF as a regulator of bone remodeling through effects on both OB and OC. Finally, these data underscore the potential of targeting bone remodeling as adjuvant therapy or in patients with genetic predispositions to prevent the development of OS. Public Library of Science 2010-12-30 /pmc/articles/PMC3012707/ /pubmed/21209895 http://dx.doi.org/10.1371/journal.pone.0015755 Text en Rauch 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
Rauch, Daniel A.
Hurchla, Michelle A.
Harding, John C.
Deng, Hongju
Shea, Lauren K.
Eagleton, Mark C.
Niewiesk, Stefan
Lairmore, Michael D.
Piwnica-Worms, David
Rosol, Thomas J.
Weber, Jason D.
Ratner, Lee
Weilbaecher, Katherine N.
The ARF Tumor Suppressor Regulates Bone Remodeling and Osteosarcoma Development in Mice
title The ARF Tumor Suppressor Regulates Bone Remodeling and Osteosarcoma Development in Mice
title_full The ARF Tumor Suppressor Regulates Bone Remodeling and Osteosarcoma Development in Mice
title_fullStr The ARF Tumor Suppressor Regulates Bone Remodeling and Osteosarcoma Development in Mice
title_full_unstemmed The ARF Tumor Suppressor Regulates Bone Remodeling and Osteosarcoma Development in Mice
title_short The ARF Tumor Suppressor Regulates Bone Remodeling and Osteosarcoma Development in Mice
title_sort arf tumor suppressor regulates bone remodeling and osteosarcoma development in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3012707/
https://www.ncbi.nlm.nih.gov/pubmed/21209895
http://dx.doi.org/10.1371/journal.pone.0015755
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