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Loss of Myeloid-Specific TGF-β Signaling Decreases CTHRC1 to Downregulate bFGF and the Development of H1993-Induced Osteolytic Bone Lesions

The role of myeloid cell-specific TGF-β signaling in non-small-cell lung cancer (NSCLC)-induced osteolytic bone lesion development is unknown. We used a genetically engineered mouse model, Tgfbr2(LysMCre) knockout (KO), which has a loss of TGF-β signaling specifically in myeloid lineage cells, and w...

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Autores principales: Ganguly, Sourik S., Daft, Paul G., Cao, Jingchen, Meng, Xiangqi, Zhong, Zhendong A., Vander Ark, Alexandra, Meadows, Austin, Madaj, Zach, Williams, Bart, Li, Xiaohong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315699/
https://www.ncbi.nlm.nih.gov/pubmed/30469488
http://dx.doi.org/10.3390/cancers10120463
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author Ganguly, Sourik S.
Daft, Paul G.
Cao, Jingchen
Meng, Xiangqi
Zhong, Zhendong A.
Vander Ark, Alexandra
Meadows, Austin
Madaj, Zach
Williams, Bart
Li, Xiaohong
author_facet Ganguly, Sourik S.
Daft, Paul G.
Cao, Jingchen
Meng, Xiangqi
Zhong, Zhendong A.
Vander Ark, Alexandra
Meadows, Austin
Madaj, Zach
Williams, Bart
Li, Xiaohong
author_sort Ganguly, Sourik S.
collection PubMed
description The role of myeloid cell-specific TGF-β signaling in non-small-cell lung cancer (NSCLC)-induced osteolytic bone lesion development is unknown. We used a genetically engineered mouse model, Tgfbr2(LysMCre) knockout (KO), which has a loss of TGF-β signaling specifically in myeloid lineage cells, and we found that the area of H1993 cell-induced osteolytic bone lesions was decreased in Tgfbr2(LysMCre) KO mice, relative to the area in control littermates. The bone lesion areas were correlated with tumor cell proliferation, angiogenesis, and osteoclastogenesis in the microenvironment. The smaller bone lesion area was partially rescued by bFGF, which was expressed by osteoblasts. Interestingly, bFGF was able to rescue the osteoclastogenesis, but not the tumor cell proliferation or angiogenesis. We then focused on identifying osteoclast factors that regulate bFGF expression in osteoblasts. We found that the expression and secretion of CTHRC1 was downregulated in osteoclasts from Tgfbr2(LysMCre) KO mice; CTHRC1 was able to promote bFGF expression in osteoblasts, possibly through the Wnt/β-catenin pathway. Functionally, bFGF stimulated osteoclastogenesis and inhibited osteoblastogenesis, but had no effect on H1993 cell proliferation. On the other hand, CTHRC1 promoted osteoblastogenesis and H1993 cell proliferation. Together, our data show that myeloid-specific TGF-β signaling promoted osteolytic bone lesion development and bFGF expression in osteoblasts; that osteoclast-secreted CTHRC1 stimulated bFGF expression in osteoblasts in a paracrine manner; and that CTHRC1 and bFGF had different cell-specific functions that contributed to bone lesion development.
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spelling pubmed-63156992019-01-09 Loss of Myeloid-Specific TGF-β Signaling Decreases CTHRC1 to Downregulate bFGF and the Development of H1993-Induced Osteolytic Bone Lesions Ganguly, Sourik S. Daft, Paul G. Cao, Jingchen Meng, Xiangqi Zhong, Zhendong A. Vander Ark, Alexandra Meadows, Austin Madaj, Zach Williams, Bart Li, Xiaohong Cancers (Basel) Article The role of myeloid cell-specific TGF-β signaling in non-small-cell lung cancer (NSCLC)-induced osteolytic bone lesion development is unknown. We used a genetically engineered mouse model, Tgfbr2(LysMCre) knockout (KO), which has a loss of TGF-β signaling specifically in myeloid lineage cells, and we found that the area of H1993 cell-induced osteolytic bone lesions was decreased in Tgfbr2(LysMCre) KO mice, relative to the area in control littermates. The bone lesion areas were correlated with tumor cell proliferation, angiogenesis, and osteoclastogenesis in the microenvironment. The smaller bone lesion area was partially rescued by bFGF, which was expressed by osteoblasts. Interestingly, bFGF was able to rescue the osteoclastogenesis, but not the tumor cell proliferation or angiogenesis. We then focused on identifying osteoclast factors that regulate bFGF expression in osteoblasts. We found that the expression and secretion of CTHRC1 was downregulated in osteoclasts from Tgfbr2(LysMCre) KO mice; CTHRC1 was able to promote bFGF expression in osteoblasts, possibly through the Wnt/β-catenin pathway. Functionally, bFGF stimulated osteoclastogenesis and inhibited osteoblastogenesis, but had no effect on H1993 cell proliferation. On the other hand, CTHRC1 promoted osteoblastogenesis and H1993 cell proliferation. Together, our data show that myeloid-specific TGF-β signaling promoted osteolytic bone lesion development and bFGF expression in osteoblasts; that osteoclast-secreted CTHRC1 stimulated bFGF expression in osteoblasts in a paracrine manner; and that CTHRC1 and bFGF had different cell-specific functions that contributed to bone lesion development. MDPI 2018-11-22 /pmc/articles/PMC6315699/ /pubmed/30469488 http://dx.doi.org/10.3390/cancers10120463 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ganguly, Sourik S.
Daft, Paul G.
Cao, Jingchen
Meng, Xiangqi
Zhong, Zhendong A.
Vander Ark, Alexandra
Meadows, Austin
Madaj, Zach
Williams, Bart
Li, Xiaohong
Loss of Myeloid-Specific TGF-β Signaling Decreases CTHRC1 to Downregulate bFGF and the Development of H1993-Induced Osteolytic Bone Lesions
title Loss of Myeloid-Specific TGF-β Signaling Decreases CTHRC1 to Downregulate bFGF and the Development of H1993-Induced Osteolytic Bone Lesions
title_full Loss of Myeloid-Specific TGF-β Signaling Decreases CTHRC1 to Downregulate bFGF and the Development of H1993-Induced Osteolytic Bone Lesions
title_fullStr Loss of Myeloid-Specific TGF-β Signaling Decreases CTHRC1 to Downregulate bFGF and the Development of H1993-Induced Osteolytic Bone Lesions
title_full_unstemmed Loss of Myeloid-Specific TGF-β Signaling Decreases CTHRC1 to Downregulate bFGF and the Development of H1993-Induced Osteolytic Bone Lesions
title_short Loss of Myeloid-Specific TGF-β Signaling Decreases CTHRC1 to Downregulate bFGF and the Development of H1993-Induced Osteolytic Bone Lesions
title_sort loss of myeloid-specific tgf-β signaling decreases cthrc1 to downregulate bfgf and the development of h1993-induced osteolytic bone lesions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6315699/
https://www.ncbi.nlm.nih.gov/pubmed/30469488
http://dx.doi.org/10.3390/cancers10120463
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