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Transcriptome profiling of osteoclast subsets associated with arthritis: A pathogenic role of CCR2(hi) osteoclast progenitors

INTRODUCTION: The existence of different osteoclast progenitor (OCP) subsets has been confirmed by numerous studies. However, pathological inflammation-induced osteoclastogenesis remains incompletely understood. Detailed characterization of OCP subsets may elucidate the pathophysiology of increased...

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Autores principales: Filipović, Maša, Flegar, Darja, Aničić, Sara, Šisl, Dino, Kelava, Tomislav, Kovačić, Nataša, Šućur, Alan, Grčević, Danka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9797520/
https://www.ncbi.nlm.nih.gov/pubmed/36591261
http://dx.doi.org/10.3389/fimmu.2022.994035
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author Filipović, Maša
Flegar, Darja
Aničić, Sara
Šisl, Dino
Kelava, Tomislav
Kovačić, Nataša
Šućur, Alan
Grčević, Danka
author_facet Filipović, Maša
Flegar, Darja
Aničić, Sara
Šisl, Dino
Kelava, Tomislav
Kovačić, Nataša
Šućur, Alan
Grčević, Danka
author_sort Filipović, Maša
collection PubMed
description INTRODUCTION: The existence of different osteoclast progenitor (OCP) subsets has been confirmed by numerous studies. However, pathological inflammation-induced osteoclastogenesis remains incompletely understood. Detailed characterization of OCP subsets may elucidate the pathophysiology of increased osteoclast activity causing periarticular and systemic bone resorption in arthritis. In our study, we rely on previously defined OCP subsets categorized by the level of CCR2 expression as circulatory-like committed CCR2(hi) OCPs, which are substantially expanded in arthritis, and marrow-resident CCR2(lo) OCPs of immature phenotype and behavior. METHODS: In order to perform transcriptome characterization of those subsets in the context of collagen-induced arthritis (CIA), we sorted CCR2(hi) and CCR2(lo) periarticular bone marrow OCPs of control and arthritic mice, and performed next-generation RNA sequencing (n=4 for each group) to evaluate the differential gene expression profile using gene set enrichment analysis with further validation. RESULTS: A disparity between CCR2(hi) and CCR2(lo) subset transcriptomes (863 genes) was detected, with the enrichment of pathways for osteoclast differentiation, chemokine and NOD-like receptor signaling in the CCR2(hi) OCP subset, and ribosome biogenesis in eukaryotes and ribosome pathways in the CCR2(lo) OCP subset. The effect of intervention (CIA) within each subset was greater in CCR2(hi) (92 genes) than in CCR2(lo) (43 genes) OCPs. Genes associated with the osteoclastogenic pathway (Fcgr1, Socs3), and several genes involved in cell adhesion and migration (F11r, Cd38, Lrg1) identified the CCR2(hi) subset and distinguish CIA from control group, as validated by qPCR (n=6 for control mice, n=9 for CIA mice). The latter gene set showed a significant positive correlation with arthritis clinical score and frequency of CCR2(hi) OCPs. Protein-level validation by flow cytometry showed increased proportion of OCPs expressing F11r/CD321, CD38 and Lrg1 in CIA, indicating that they could be used as disease markers. Moreover, osteoclast pathway-identifying genes remained similarly expressed (Fcgr1) or even induced by several fold (Socs3) in preosteoclasts differentiated in vitro from CIA mice compared to pre-cultured levels, suggesting their importance for enhanced osteoclastogenesis of the CCR2(hi) OCPs in arthritis. CONCLUSION: Our approach detected differentially expressed genes that could identify distinct subset of OCPs associated with arthritis as well as indicate possible therapeutic targets aimed to modulate osteoclast activity.
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spelling pubmed-97975202022-12-30 Transcriptome profiling of osteoclast subsets associated with arthritis: A pathogenic role of CCR2(hi) osteoclast progenitors Filipović, Maša Flegar, Darja Aničić, Sara Šisl, Dino Kelava, Tomislav Kovačić, Nataša Šućur, Alan Grčević, Danka Front Immunol Immunology INTRODUCTION: The existence of different osteoclast progenitor (OCP) subsets has been confirmed by numerous studies. However, pathological inflammation-induced osteoclastogenesis remains incompletely understood. Detailed characterization of OCP subsets may elucidate the pathophysiology of increased osteoclast activity causing periarticular and systemic bone resorption in arthritis. In our study, we rely on previously defined OCP subsets categorized by the level of CCR2 expression as circulatory-like committed CCR2(hi) OCPs, which are substantially expanded in arthritis, and marrow-resident CCR2(lo) OCPs of immature phenotype and behavior. METHODS: In order to perform transcriptome characterization of those subsets in the context of collagen-induced arthritis (CIA), we sorted CCR2(hi) and CCR2(lo) periarticular bone marrow OCPs of control and arthritic mice, and performed next-generation RNA sequencing (n=4 for each group) to evaluate the differential gene expression profile using gene set enrichment analysis with further validation. RESULTS: A disparity between CCR2(hi) and CCR2(lo) subset transcriptomes (863 genes) was detected, with the enrichment of pathways for osteoclast differentiation, chemokine and NOD-like receptor signaling in the CCR2(hi) OCP subset, and ribosome biogenesis in eukaryotes and ribosome pathways in the CCR2(lo) OCP subset. The effect of intervention (CIA) within each subset was greater in CCR2(hi) (92 genes) than in CCR2(lo) (43 genes) OCPs. Genes associated with the osteoclastogenic pathway (Fcgr1, Socs3), and several genes involved in cell adhesion and migration (F11r, Cd38, Lrg1) identified the CCR2(hi) subset and distinguish CIA from control group, as validated by qPCR (n=6 for control mice, n=9 for CIA mice). The latter gene set showed a significant positive correlation with arthritis clinical score and frequency of CCR2(hi) OCPs. Protein-level validation by flow cytometry showed increased proportion of OCPs expressing F11r/CD321, CD38 and Lrg1 in CIA, indicating that they could be used as disease markers. Moreover, osteoclast pathway-identifying genes remained similarly expressed (Fcgr1) or even induced by several fold (Socs3) in preosteoclasts differentiated in vitro from CIA mice compared to pre-cultured levels, suggesting their importance for enhanced osteoclastogenesis of the CCR2(hi) OCPs in arthritis. CONCLUSION: Our approach detected differentially expressed genes that could identify distinct subset of OCPs associated with arthritis as well as indicate possible therapeutic targets aimed to modulate osteoclast activity. Frontiers Media S.A. 2022-12-15 /pmc/articles/PMC9797520/ /pubmed/36591261 http://dx.doi.org/10.3389/fimmu.2022.994035 Text en Copyright © 2022 Filipović, Flegar, Aničić, Šisl, Kelava, Kovačić, Šućur and Grčević https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Filipović, Maša
Flegar, Darja
Aničić, Sara
Šisl, Dino
Kelava, Tomislav
Kovačić, Nataša
Šućur, Alan
Grčević, Danka
Transcriptome profiling of osteoclast subsets associated with arthritis: A pathogenic role of CCR2(hi) osteoclast progenitors
title Transcriptome profiling of osteoclast subsets associated with arthritis: A pathogenic role of CCR2(hi) osteoclast progenitors
title_full Transcriptome profiling of osteoclast subsets associated with arthritis: A pathogenic role of CCR2(hi) osteoclast progenitors
title_fullStr Transcriptome profiling of osteoclast subsets associated with arthritis: A pathogenic role of CCR2(hi) osteoclast progenitors
title_full_unstemmed Transcriptome profiling of osteoclast subsets associated with arthritis: A pathogenic role of CCR2(hi) osteoclast progenitors
title_short Transcriptome profiling of osteoclast subsets associated with arthritis: A pathogenic role of CCR2(hi) osteoclast progenitors
title_sort transcriptome profiling of osteoclast subsets associated with arthritis: a pathogenic role of ccr2(hi) osteoclast progenitors
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9797520/
https://www.ncbi.nlm.nih.gov/pubmed/36591261
http://dx.doi.org/10.3389/fimmu.2022.994035
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