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JAK2-IGF1 axis in osteoclasts regulates postnatal growth in mice

Osteoclasts are specialized cells of the hematopoietic lineage that are responsible for bone resorption and play a critical role in musculoskeletal disease. JAK2 is a key mediator of cytokine and growth factor signaling; however, its role in osteoclasts in vivo has yet to be investigated. To elucida...

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Autores principales: Dodington, David W., Yumol, Jenalyn L., Yang, Jiaqi, Pollock-Tahiri, Evan, Sivasubramaniyam, Tharini, Sacco, Sandra M., Schroer, Stephanie A., Li, Yujin E., Le, Helen, Ward, Wendy E., Woo, Minna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8021113/
https://www.ncbi.nlm.nih.gov/pubmed/33682794
http://dx.doi.org/10.1172/jci.insight.137045
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author Dodington, David W.
Yumol, Jenalyn L.
Yang, Jiaqi
Pollock-Tahiri, Evan
Sivasubramaniyam, Tharini
Sacco, Sandra M.
Schroer, Stephanie A.
Li, Yujin E.
Le, Helen
Ward, Wendy E.
Woo, Minna
author_facet Dodington, David W.
Yumol, Jenalyn L.
Yang, Jiaqi
Pollock-Tahiri, Evan
Sivasubramaniyam, Tharini
Sacco, Sandra M.
Schroer, Stephanie A.
Li, Yujin E.
Le, Helen
Ward, Wendy E.
Woo, Minna
author_sort Dodington, David W.
collection PubMed
description Osteoclasts are specialized cells of the hematopoietic lineage that are responsible for bone resorption and play a critical role in musculoskeletal disease. JAK2 is a key mediator of cytokine and growth factor signaling; however, its role in osteoclasts in vivo has yet to be investigated. To elucidate the role of JAK2 in osteoclasts, we generated an osteoclast-specific JAK2–KO (Oc-JAK2–KO) mouse using the Cre/Lox-P system. Oc-JAK2–KO mice demonstrated marked postnatal growth restriction; however, this was not associated with significant changes in bone density, microarchitecture, or strength, indicating that the observed phenotype was not due to alterations in canonical osteoclast function. Interestingly, Oc-JAK2–KO mice had reduced osteoclast-specific expression of IGF1, suggesting a role for osteoclast-derived IGF1 in determination of body size. To directly assess the role of osteoclast-derived IGF1, we generated an osteoclast-specific IGF1–KO mouse, which showed a similar growth-restricted phenotype. Lastly, overexpression of circulating IGF1 by human transgene rescued the growth defects in Oc-JAK2–KO mice, in keeping with a causal role of IGF1 in these models. Together, our data show a potentially novel role for Oc-JAK2 and IGF1 in the determination of body size, which is independent of osteoclast resorptive function.
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spelling pubmed-80211132021-04-08 JAK2-IGF1 axis in osteoclasts regulates postnatal growth in mice Dodington, David W. Yumol, Jenalyn L. Yang, Jiaqi Pollock-Tahiri, Evan Sivasubramaniyam, Tharini Sacco, Sandra M. Schroer, Stephanie A. Li, Yujin E. Le, Helen Ward, Wendy E. Woo, Minna JCI Insight Research Article Osteoclasts are specialized cells of the hematopoietic lineage that are responsible for bone resorption and play a critical role in musculoskeletal disease. JAK2 is a key mediator of cytokine and growth factor signaling; however, its role in osteoclasts in vivo has yet to be investigated. To elucidate the role of JAK2 in osteoclasts, we generated an osteoclast-specific JAK2–KO (Oc-JAK2–KO) mouse using the Cre/Lox-P system. Oc-JAK2–KO mice demonstrated marked postnatal growth restriction; however, this was not associated with significant changes in bone density, microarchitecture, or strength, indicating that the observed phenotype was not due to alterations in canonical osteoclast function. Interestingly, Oc-JAK2–KO mice had reduced osteoclast-specific expression of IGF1, suggesting a role for osteoclast-derived IGF1 in determination of body size. To directly assess the role of osteoclast-derived IGF1, we generated an osteoclast-specific IGF1–KO mouse, which showed a similar growth-restricted phenotype. Lastly, overexpression of circulating IGF1 by human transgene rescued the growth defects in Oc-JAK2–KO mice, in keeping with a causal role of IGF1 in these models. Together, our data show a potentially novel role for Oc-JAK2 and IGF1 in the determination of body size, which is independent of osteoclast resorptive function. American Society for Clinical Investigation 2021-03-08 /pmc/articles/PMC8021113/ /pubmed/33682794 http://dx.doi.org/10.1172/jci.insight.137045 Text en © 2021 Dodington et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Dodington, David W.
Yumol, Jenalyn L.
Yang, Jiaqi
Pollock-Tahiri, Evan
Sivasubramaniyam, Tharini
Sacco, Sandra M.
Schroer, Stephanie A.
Li, Yujin E.
Le, Helen
Ward, Wendy E.
Woo, Minna
JAK2-IGF1 axis in osteoclasts regulates postnatal growth in mice
title JAK2-IGF1 axis in osteoclasts regulates postnatal growth in mice
title_full JAK2-IGF1 axis in osteoclasts regulates postnatal growth in mice
title_fullStr JAK2-IGF1 axis in osteoclasts regulates postnatal growth in mice
title_full_unstemmed JAK2-IGF1 axis in osteoclasts regulates postnatal growth in mice
title_short JAK2-IGF1 axis in osteoclasts regulates postnatal growth in mice
title_sort jak2-igf1 axis in osteoclasts regulates postnatal growth in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8021113/
https://www.ncbi.nlm.nih.gov/pubmed/33682794
http://dx.doi.org/10.1172/jci.insight.137045
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