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Conditional Inactivation of TNFα-Converting Enzyme in Chondrocytes Results in an Elongated Growth Plate and Shorter Long Bones

TNFα-converting enzyme (TACE) is a membrane-bound proteolytic enzyme with essential roles in the functional regulation of TNFα and epidermal growth factor receptor (EGFR) ligands. Previous studies have demonstrated critical roles for TACE in vivo, including epidermal development, immune response, an...

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Autores principales: Saito, Kenta, Horiuchi, Keisuke, Kimura, Tokuhiro, Mizuno, Sakiko, Yoda, Masaki, Morioka, Hideo, Akiyama, Haruhiko, Threadgill, David, Okada, Yasunori, Toyama, Yoshiaki, Sato, Kazuki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3548805/
https://www.ncbi.nlm.nih.gov/pubmed/23349978
http://dx.doi.org/10.1371/journal.pone.0054853
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author Saito, Kenta
Horiuchi, Keisuke
Kimura, Tokuhiro
Mizuno, Sakiko
Yoda, Masaki
Morioka, Hideo
Akiyama, Haruhiko
Threadgill, David
Okada, Yasunori
Toyama, Yoshiaki
Sato, Kazuki
author_facet Saito, Kenta
Horiuchi, Keisuke
Kimura, Tokuhiro
Mizuno, Sakiko
Yoda, Masaki
Morioka, Hideo
Akiyama, Haruhiko
Threadgill, David
Okada, Yasunori
Toyama, Yoshiaki
Sato, Kazuki
author_sort Saito, Kenta
collection PubMed
description TNFα-converting enzyme (TACE) is a membrane-bound proteolytic enzyme with essential roles in the functional regulation of TNFα and epidermal growth factor receptor (EGFR) ligands. Previous studies have demonstrated critical roles for TACE in vivo, including epidermal development, immune response, and pathological neoangiogenesis, among others. However, the potential contribution of TACE to skeletal development is still unclear. In the present study, we generated a Tace mutant mouse in which Tace is conditionally disrupted in chondrocytes under the control of the Col2a1 promoter. These mutant mice were fertile and viable but all exhibited long bones that were approximately 10% shorter compared to those of wild-type animals. Histological analyses revealed that Tace mutant mice exhibited a longer hypertrophic zone in the growth plate, and there were fewer osteoclasts at the chondro-osseous junction in the Tace mutant mice than in their wild-type littermates. Of note, we found an increase in osteoprotegerin transcripts and a reduction in Rankl and Mmp-13 transcripts in the TACE-deficient cartilage, indicating that dysregulation of these genes is causally related to the skeletal defects in the Tace mutant mice. Furthermore, we also found that phosphorylation of EGFR was significantly reduced in the cartilage tissue lacking TACE, and that suppression of EGFR signaling increases osteoprotegerin transcripts and reduces Rankl and Mmp-13 transcripts in primary chondrocytes. In accordance, chondrocyte-specific abrogation of Egfr in vivo resulted in skeletal defects nearly identical to those observed in the Tace mutant mice. Taken together, these data suggest that TACE-EGFR signaling in chondrocytes is involved in the turnover of the growth plate during postnatal development via the transcriptional regulation of osteoprotegerin, Rankl, and Mmp-13.
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spelling pubmed-35488052013-01-24 Conditional Inactivation of TNFα-Converting Enzyme in Chondrocytes Results in an Elongated Growth Plate and Shorter Long Bones Saito, Kenta Horiuchi, Keisuke Kimura, Tokuhiro Mizuno, Sakiko Yoda, Masaki Morioka, Hideo Akiyama, Haruhiko Threadgill, David Okada, Yasunori Toyama, Yoshiaki Sato, Kazuki PLoS One Research Article TNFα-converting enzyme (TACE) is a membrane-bound proteolytic enzyme with essential roles in the functional regulation of TNFα and epidermal growth factor receptor (EGFR) ligands. Previous studies have demonstrated critical roles for TACE in vivo, including epidermal development, immune response, and pathological neoangiogenesis, among others. However, the potential contribution of TACE to skeletal development is still unclear. In the present study, we generated a Tace mutant mouse in which Tace is conditionally disrupted in chondrocytes under the control of the Col2a1 promoter. These mutant mice were fertile and viable but all exhibited long bones that were approximately 10% shorter compared to those of wild-type animals. Histological analyses revealed that Tace mutant mice exhibited a longer hypertrophic zone in the growth plate, and there were fewer osteoclasts at the chondro-osseous junction in the Tace mutant mice than in their wild-type littermates. Of note, we found an increase in osteoprotegerin transcripts and a reduction in Rankl and Mmp-13 transcripts in the TACE-deficient cartilage, indicating that dysregulation of these genes is causally related to the skeletal defects in the Tace mutant mice. Furthermore, we also found that phosphorylation of EGFR was significantly reduced in the cartilage tissue lacking TACE, and that suppression of EGFR signaling increases osteoprotegerin transcripts and reduces Rankl and Mmp-13 transcripts in primary chondrocytes. In accordance, chondrocyte-specific abrogation of Egfr in vivo resulted in skeletal defects nearly identical to those observed in the Tace mutant mice. Taken together, these data suggest that TACE-EGFR signaling in chondrocytes is involved in the turnover of the growth plate during postnatal development via the transcriptional regulation of osteoprotegerin, Rankl, and Mmp-13. Public Library of Science 2013-01-18 /pmc/articles/PMC3548805/ /pubmed/23349978 http://dx.doi.org/10.1371/journal.pone.0054853 Text en © 2013 Saito 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
Saito, Kenta
Horiuchi, Keisuke
Kimura, Tokuhiro
Mizuno, Sakiko
Yoda, Masaki
Morioka, Hideo
Akiyama, Haruhiko
Threadgill, David
Okada, Yasunori
Toyama, Yoshiaki
Sato, Kazuki
Conditional Inactivation of TNFα-Converting Enzyme in Chondrocytes Results in an Elongated Growth Plate and Shorter Long Bones
title Conditional Inactivation of TNFα-Converting Enzyme in Chondrocytes Results in an Elongated Growth Plate and Shorter Long Bones
title_full Conditional Inactivation of TNFα-Converting Enzyme in Chondrocytes Results in an Elongated Growth Plate and Shorter Long Bones
title_fullStr Conditional Inactivation of TNFα-Converting Enzyme in Chondrocytes Results in an Elongated Growth Plate and Shorter Long Bones
title_full_unstemmed Conditional Inactivation of TNFα-Converting Enzyme in Chondrocytes Results in an Elongated Growth Plate and Shorter Long Bones
title_short Conditional Inactivation of TNFα-Converting Enzyme in Chondrocytes Results in an Elongated Growth Plate and Shorter Long Bones
title_sort conditional inactivation of tnfα-converting enzyme in chondrocytes results in an elongated growth plate and shorter long bones
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3548805/
https://www.ncbi.nlm.nih.gov/pubmed/23349978
http://dx.doi.org/10.1371/journal.pone.0054853
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