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Terminal osteoblast differentiation, mediated by runx2 and p27(KIP1), is disrupted in osteosarcoma

The molecular basis for the inverse relationship between differentiation and tumorigenesis is unknown. The function of runx2, a master regulator of osteoblast differentiation belonging to the runt family of tumor suppressor genes, is consistently disrupted in osteosarcoma cell lines. Ectopic express...

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Autores principales: Thomas, David M., Johnson, Sandra A., Sims, Natalie A., Trivett, Melanie K., Slavin, John L., Rubin, Brian P., Waring, Paul, McArthur, Grant A., Walkley, Carl R., Holloway, Andrew J., Diyagama, Dileepa, Grim, Jonathon E., Clurman, Bruce E., Bowtell, David D.L., Lee, Jong-Seo, Gutierrez, Gabriel M., Piscopo, Denise M., Carty, Shannon A., Hinds, Philip W.
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 2004
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2172443/
https://www.ncbi.nlm.nih.gov/pubmed/15583032
http://dx.doi.org/10.1083/jcb.200409187
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author Thomas, David M.
Johnson, Sandra A.
Sims, Natalie A.
Trivett, Melanie K.
Slavin, John L.
Rubin, Brian P.
Waring, Paul
McArthur, Grant A.
Walkley, Carl R.
Holloway, Andrew J.
Diyagama, Dileepa
Grim, Jonathon E.
Clurman, Bruce E.
Bowtell, David D.L.
Lee, Jong-Seo
Gutierrez, Gabriel M.
Piscopo, Denise M.
Carty, Shannon A.
Hinds, Philip W.
author_facet Thomas, David M.
Johnson, Sandra A.
Sims, Natalie A.
Trivett, Melanie K.
Slavin, John L.
Rubin, Brian P.
Waring, Paul
McArthur, Grant A.
Walkley, Carl R.
Holloway, Andrew J.
Diyagama, Dileepa
Grim, Jonathon E.
Clurman, Bruce E.
Bowtell, David D.L.
Lee, Jong-Seo
Gutierrez, Gabriel M.
Piscopo, Denise M.
Carty, Shannon A.
Hinds, Philip W.
author_sort Thomas, David M.
collection PubMed
description The molecular basis for the inverse relationship between differentiation and tumorigenesis is unknown. The function of runx2, a master regulator of osteoblast differentiation belonging to the runt family of tumor suppressor genes, is consistently disrupted in osteosarcoma cell lines. Ectopic expression of runx2 induces p27(KIP1), thereby inhibiting the activity of S-phase cyclin complexes and leading to the dephosphorylation of the retinoblastoma tumor suppressor protein (pRb) and a G1 cell cycle arrest. Runx2 physically interacts with the hypophosphorylated form of pRb, a known coactivator of runx2, thereby completing a feed-forward loop in which progressive cell cycle exit promotes increased expression of the osteoblast phenotype. Loss of p27(KIP1) perturbs transient and terminal cell cycle exit in osteoblasts. Consistent with the incompatibility of malignant transformation and permanent cell cycle exit, loss of p27(KIP1) expression correlates with dedifferentiation in high-grade human osteosarcomas. Physiologic coupling of osteoblast differentiation to cell cycle withdrawal is mediated through runx2 and p27(KIP1), and these processes are disrupted in osteosarcoma.
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spelling pubmed-21724432008-03-05 Terminal osteoblast differentiation, mediated by runx2 and p27(KIP1), is disrupted in osteosarcoma Thomas, David M. Johnson, Sandra A. Sims, Natalie A. Trivett, Melanie K. Slavin, John L. Rubin, Brian P. Waring, Paul McArthur, Grant A. Walkley, Carl R. Holloway, Andrew J. Diyagama, Dileepa Grim, Jonathon E. Clurman, Bruce E. Bowtell, David D.L. Lee, Jong-Seo Gutierrez, Gabriel M. Piscopo, Denise M. Carty, Shannon A. Hinds, Philip W. J Cell Biol Research Articles The molecular basis for the inverse relationship between differentiation and tumorigenesis is unknown. The function of runx2, a master regulator of osteoblast differentiation belonging to the runt family of tumor suppressor genes, is consistently disrupted in osteosarcoma cell lines. Ectopic expression of runx2 induces p27(KIP1), thereby inhibiting the activity of S-phase cyclin complexes and leading to the dephosphorylation of the retinoblastoma tumor suppressor protein (pRb) and a G1 cell cycle arrest. Runx2 physically interacts with the hypophosphorylated form of pRb, a known coactivator of runx2, thereby completing a feed-forward loop in which progressive cell cycle exit promotes increased expression of the osteoblast phenotype. Loss of p27(KIP1) perturbs transient and terminal cell cycle exit in osteoblasts. Consistent with the incompatibility of malignant transformation and permanent cell cycle exit, loss of p27(KIP1) expression correlates with dedifferentiation in high-grade human osteosarcomas. Physiologic coupling of osteoblast differentiation to cell cycle withdrawal is mediated through runx2 and p27(KIP1), and these processes are disrupted in osteosarcoma. The Rockefeller University Press 2004-12-06 /pmc/articles/PMC2172443/ /pubmed/15583032 http://dx.doi.org/10.1083/jcb.200409187 Text en Copyright © 2004, The Rockefeller University Press This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Research Articles
Thomas, David M.
Johnson, Sandra A.
Sims, Natalie A.
Trivett, Melanie K.
Slavin, John L.
Rubin, Brian P.
Waring, Paul
McArthur, Grant A.
Walkley, Carl R.
Holloway, Andrew J.
Diyagama, Dileepa
Grim, Jonathon E.
Clurman, Bruce E.
Bowtell, David D.L.
Lee, Jong-Seo
Gutierrez, Gabriel M.
Piscopo, Denise M.
Carty, Shannon A.
Hinds, Philip W.
Terminal osteoblast differentiation, mediated by runx2 and p27(KIP1), is disrupted in osteosarcoma
title Terminal osteoblast differentiation, mediated by runx2 and p27(KIP1), is disrupted in osteosarcoma
title_full Terminal osteoblast differentiation, mediated by runx2 and p27(KIP1), is disrupted in osteosarcoma
title_fullStr Terminal osteoblast differentiation, mediated by runx2 and p27(KIP1), is disrupted in osteosarcoma
title_full_unstemmed Terminal osteoblast differentiation, mediated by runx2 and p27(KIP1), is disrupted in osteosarcoma
title_short Terminal osteoblast differentiation, mediated by runx2 and p27(KIP1), is disrupted in osteosarcoma
title_sort terminal osteoblast differentiation, mediated by runx2 and p27(kip1), is disrupted in osteosarcoma
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2172443/
https://www.ncbi.nlm.nih.gov/pubmed/15583032
http://dx.doi.org/10.1083/jcb.200409187
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