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A novel function for platelet-derived growth factor D: induction of osteoclastic differentiation for intraosseous tumor growth

Although increasing evidence suggests a critical role for platelet-derived growth factor (PDGF) receptor β (β-PDGFR) signaling in prostate cancer (PCa) progression, the precise roles of β-PDGFR and PDGF isoform-specific cell signaling have not been delineated. Recently, we identified the PDGF-D isof...

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Autores principales: Huang, W, Fridman, Y, Bonfil, R D, Ustach, C V, Conley-LaComb, M K, Wiesner, C, Saliganan, A, Cher, M L, Kim, H-R C
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3482867/
https://www.ncbi.nlm.nih.gov/pubmed/22158043
http://dx.doi.org/10.1038/onc.2011.573
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author Huang, W
Fridman, Y
Bonfil, R D
Ustach, C V
Conley-LaComb, M K
Wiesner, C
Saliganan, A
Cher, M L
Kim, H-R C
author_facet Huang, W
Fridman, Y
Bonfil, R D
Ustach, C V
Conley-LaComb, M K
Wiesner, C
Saliganan, A
Cher, M L
Kim, H-R C
author_sort Huang, W
collection PubMed
description Although increasing evidence suggests a critical role for platelet-derived growth factor (PDGF) receptor β (β-PDGFR) signaling in prostate cancer (PCa) progression, the precise roles of β-PDGFR and PDGF isoform-specific cell signaling have not been delineated. Recently, we identified the PDGF-D isoform as a ligand for β-PDGFR in PCa and showed that PDGF-D is activated by serine protease-mediated proteolytic removal of the CUB domain in a two-step process, yielding first a hemidimer (HD) and then a growth factor domain dimer. Herein, we demonstrate that the expression of PDGF-D in human PCa LNCaP cells leads to enhanced bone tumor growth and bone responses in immunodeficient mice. Histopathological analyses of bone tumors generated by PDGF-D-expressing LNCaP cells (LNCaP-PDGF-D) revealed osteolytic and osteoblastic responses similar to those observed in human PCa bone metastases. Importantly, we discovered a novel function of PDGF-D in the regulation of osteoclast differentiation, independent of the RANKL/RANK signaling axis. Although both PDGF-B and -D were able to activate β-PDGFR, only PDGF-D was able to induce osteoclastic differentiation in vitro, and upregulate the expression and nuclear translocation of nuclear factor of activated T cells 1, a master transcription factor for osteoclastogenesis. Taken together, these results reveal a new function of PDGF-D as a regulator of osteoclastic differentiation, an activity critical for the establishment of skeletal metastatic deposit in PCa patients.
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spelling pubmed-34828672012-10-29 A novel function for platelet-derived growth factor D: induction of osteoclastic differentiation for intraosseous tumor growth Huang, W Fridman, Y Bonfil, R D Ustach, C V Conley-LaComb, M K Wiesner, C Saliganan, A Cher, M L Kim, H-R C Oncogene Original Article Although increasing evidence suggests a critical role for platelet-derived growth factor (PDGF) receptor β (β-PDGFR) signaling in prostate cancer (PCa) progression, the precise roles of β-PDGFR and PDGF isoform-specific cell signaling have not been delineated. Recently, we identified the PDGF-D isoform as a ligand for β-PDGFR in PCa and showed that PDGF-D is activated by serine protease-mediated proteolytic removal of the CUB domain in a two-step process, yielding first a hemidimer (HD) and then a growth factor domain dimer. Herein, we demonstrate that the expression of PDGF-D in human PCa LNCaP cells leads to enhanced bone tumor growth and bone responses in immunodeficient mice. Histopathological analyses of bone tumors generated by PDGF-D-expressing LNCaP cells (LNCaP-PDGF-D) revealed osteolytic and osteoblastic responses similar to those observed in human PCa bone metastases. Importantly, we discovered a novel function of PDGF-D in the regulation of osteoclast differentiation, independent of the RANKL/RANK signaling axis. Although both PDGF-B and -D were able to activate β-PDGFR, only PDGF-D was able to induce osteoclastic differentiation in vitro, and upregulate the expression and nuclear translocation of nuclear factor of activated T cells 1, a master transcription factor for osteoclastogenesis. Taken together, these results reveal a new function of PDGF-D as a regulator of osteoclastic differentiation, an activity critical for the establishment of skeletal metastatic deposit in PCa patients. Nature Publishing Group 2012-10-18 2011-12-12 /pmc/articles/PMC3482867/ /pubmed/22158043 http://dx.doi.org/10.1038/onc.2011.573 Text en Copyright © 2012 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Original Article
Huang, W
Fridman, Y
Bonfil, R D
Ustach, C V
Conley-LaComb, M K
Wiesner, C
Saliganan, A
Cher, M L
Kim, H-R C
A novel function for platelet-derived growth factor D: induction of osteoclastic differentiation for intraosseous tumor growth
title A novel function for platelet-derived growth factor D: induction of osteoclastic differentiation for intraosseous tumor growth
title_full A novel function for platelet-derived growth factor D: induction of osteoclastic differentiation for intraosseous tumor growth
title_fullStr A novel function for platelet-derived growth factor D: induction of osteoclastic differentiation for intraosseous tumor growth
title_full_unstemmed A novel function for platelet-derived growth factor D: induction of osteoclastic differentiation for intraosseous tumor growth
title_short A novel function for platelet-derived growth factor D: induction of osteoclastic differentiation for intraosseous tumor growth
title_sort novel function for platelet-derived growth factor d: induction of osteoclastic differentiation for intraosseous tumor growth
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3482867/
https://www.ncbi.nlm.nih.gov/pubmed/22158043
http://dx.doi.org/10.1038/onc.2011.573
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