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Cxcl9l and Cxcr3.2 regulate recruitment of osteoclast progenitors to bone matrix in a medaka osteoporosis model

Bone homeostasis requires continuous remodeling of bone matrix to maintain structural integrity. This involves extensive communication between bone-forming osteoblasts and bone-resorbing osteoclasts to orchestrate balanced progenitor cell recruitment and activation. Only a few mediators controlling...

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Autores principales: Phan, Quang Tien, Tan, Wen Hui, Liu, Ranran, Sundaram, Sudha, Buettner, Anita, Kneitz, Susanne, Cheong, Benedict, Vyas, Himanshu, Mathavan, Sinnakaruppan, Schartl, Manfred, Winkler, Christoph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7431079/
https://www.ncbi.nlm.nih.gov/pubmed/32719141
http://dx.doi.org/10.1073/pnas.2006093117
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author Phan, Quang Tien
Tan, Wen Hui
Liu, Ranran
Sundaram, Sudha
Buettner, Anita
Kneitz, Susanne
Cheong, Benedict
Vyas, Himanshu
Mathavan, Sinnakaruppan
Schartl, Manfred
Winkler, Christoph
author_facet Phan, Quang Tien
Tan, Wen Hui
Liu, Ranran
Sundaram, Sudha
Buettner, Anita
Kneitz, Susanne
Cheong, Benedict
Vyas, Himanshu
Mathavan, Sinnakaruppan
Schartl, Manfred
Winkler, Christoph
author_sort Phan, Quang Tien
collection PubMed
description Bone homeostasis requires continuous remodeling of bone matrix to maintain structural integrity. This involves extensive communication between bone-forming osteoblasts and bone-resorbing osteoclasts to orchestrate balanced progenitor cell recruitment and activation. Only a few mediators controlling progenitor activation are known to date and have been targeted for intervention of bone disorders such as osteoporosis. To identify druggable pathways, we generated a medaka (Oryzias latipes) osteoporosis model, where inducible expression of receptor-activator of nuclear factor kappa-Β ligand (Rankl) leads to ectopic formation of osteoclasts and excessive bone resorption, which can be assessed by live imaging. Here we show that upon Rankl induction, osteoblast progenitors up-regulate expression of the chemokine ligand Cxcl9l. Ectopic expression of Cxcl9l recruits mpeg1-positive macrophages to bone matrix and triggers their differentiation into osteoclasts. We also demonstrate that the chemokine receptor Cxcr3.2 is expressed in a distinct subset of macrophages in the aorta-gonad-mesonephros (AGM). Live imaging revealed that upon Rankl induction, Cxcr3.2-positive macrophages get activated, migrate to bone matrix, and differentiate into osteoclasts. Importantly, mutations in cxcr3.2 prevent macrophage recruitment and osteoclast differentiation. Furthermore, Cxcr3.2 inhibition by the chemical antagonists AMG487 and NBI-74330 also reduced osteoclast recruitment and protected bone integrity against osteoporotic insult. Our data identify a mechanism for progenitor recruitment to bone resorption sites and Cxcl9l and Cxcr3.2 as potential druggable regulators of bone homeostasis and osteoporosis.
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spelling pubmed-74310792020-08-27 Cxcl9l and Cxcr3.2 regulate recruitment of osteoclast progenitors to bone matrix in a medaka osteoporosis model Phan, Quang Tien Tan, Wen Hui Liu, Ranran Sundaram, Sudha Buettner, Anita Kneitz, Susanne Cheong, Benedict Vyas, Himanshu Mathavan, Sinnakaruppan Schartl, Manfred Winkler, Christoph Proc Natl Acad Sci U S A Biological Sciences Bone homeostasis requires continuous remodeling of bone matrix to maintain structural integrity. This involves extensive communication between bone-forming osteoblasts and bone-resorbing osteoclasts to orchestrate balanced progenitor cell recruitment and activation. Only a few mediators controlling progenitor activation are known to date and have been targeted for intervention of bone disorders such as osteoporosis. To identify druggable pathways, we generated a medaka (Oryzias latipes) osteoporosis model, where inducible expression of receptor-activator of nuclear factor kappa-Β ligand (Rankl) leads to ectopic formation of osteoclasts and excessive bone resorption, which can be assessed by live imaging. Here we show that upon Rankl induction, osteoblast progenitors up-regulate expression of the chemokine ligand Cxcl9l. Ectopic expression of Cxcl9l recruits mpeg1-positive macrophages to bone matrix and triggers their differentiation into osteoclasts. We also demonstrate that the chemokine receptor Cxcr3.2 is expressed in a distinct subset of macrophages in the aorta-gonad-mesonephros (AGM). Live imaging revealed that upon Rankl induction, Cxcr3.2-positive macrophages get activated, migrate to bone matrix, and differentiate into osteoclasts. Importantly, mutations in cxcr3.2 prevent macrophage recruitment and osteoclast differentiation. Furthermore, Cxcr3.2 inhibition by the chemical antagonists AMG487 and NBI-74330 also reduced osteoclast recruitment and protected bone integrity against osteoporotic insult. Our data identify a mechanism for progenitor recruitment to bone resorption sites and Cxcl9l and Cxcr3.2 as potential druggable regulators of bone homeostasis and osteoporosis. National Academy of Sciences 2020-08-11 2020-07-27 /pmc/articles/PMC7431079/ /pubmed/32719141 http://dx.doi.org/10.1073/pnas.2006093117 Text en Copyright © 2020 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Phan, Quang Tien
Tan, Wen Hui
Liu, Ranran
Sundaram, Sudha
Buettner, Anita
Kneitz, Susanne
Cheong, Benedict
Vyas, Himanshu
Mathavan, Sinnakaruppan
Schartl, Manfred
Winkler, Christoph
Cxcl9l and Cxcr3.2 regulate recruitment of osteoclast progenitors to bone matrix in a medaka osteoporosis model
title Cxcl9l and Cxcr3.2 regulate recruitment of osteoclast progenitors to bone matrix in a medaka osteoporosis model
title_full Cxcl9l and Cxcr3.2 regulate recruitment of osteoclast progenitors to bone matrix in a medaka osteoporosis model
title_fullStr Cxcl9l and Cxcr3.2 regulate recruitment of osteoclast progenitors to bone matrix in a medaka osteoporosis model
title_full_unstemmed Cxcl9l and Cxcr3.2 regulate recruitment of osteoclast progenitors to bone matrix in a medaka osteoporosis model
title_short Cxcl9l and Cxcr3.2 regulate recruitment of osteoclast progenitors to bone matrix in a medaka osteoporosis model
title_sort cxcl9l and cxcr3.2 regulate recruitment of osteoclast progenitors to bone matrix in a medaka osteoporosis model
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7431079/
https://www.ncbi.nlm.nih.gov/pubmed/32719141
http://dx.doi.org/10.1073/pnas.2006093117
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