Cargando…

Targeting long noncoding RNA PMIF facilitates osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging

Rationale: The migration of mesenchymal osteoprogenitor cells (OPCs) to bone formation surface is the initial step of osteoblastogenesis before they undergo osteoblast differentiation and maturation for governing bone formation. However, whether the migration capacity of OPCs is compromised during a...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Dijie, Liu, Jin, Yang, Chaofei, Tian, Ye, Yin, Chong, Hu, Lifang, Chen, Zhihao, Zhao, Fan, Zhang, Ru, Lu, Aiping, Zhang, Ge, Qian, Airong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8039942/
https://www.ncbi.nlm.nih.gov/pubmed/33859765
http://dx.doi.org/10.7150/thno.54477
_version_ 1783677692445458432
author Li, Dijie
Liu, Jin
Yang, Chaofei
Tian, Ye
Yin, Chong
Hu, Lifang
Chen, Zhihao
Zhao, Fan
Zhang, Ru
Lu, Aiping
Zhang, Ge
Qian, Airong
author_facet Li, Dijie
Liu, Jin
Yang, Chaofei
Tian, Ye
Yin, Chong
Hu, Lifang
Chen, Zhihao
Zhao, Fan
Zhang, Ru
Lu, Aiping
Zhang, Ge
Qian, Airong
author_sort Li, Dijie
collection PubMed
description Rationale: The migration of mesenchymal osteoprogenitor cells (OPCs) to bone formation surface is the initial step of osteoblastogenesis before they undergo osteoblast differentiation and maturation for governing bone formation. However, whether the migration capacity of OPCs is compromised during aging and how it contributes to the aging-related bone formation reduction remain unexplored. In the present study, we identified a migration inhibitory factor (i.e., long noncoding RNA PMIF) and examined whether targeting lnc-PMIF could facilitate osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging. Methods: Primary OPCs from young (6-momth-old) and aged (18-momth-old) C57BL/6 mice and stable lnc-PMIF knockdown/overexpression cell lines were used for in vitro and in vivo cell migration assay (i.e., wound healing assay, transwell assay and cell intratibial injection assay). RNA pulldown-MS/WB and RIP-qPCR were performed to identify the RNA binding proteins (RBPs) of lnc-PMIF. Truncations of lnc-PMIF and the identified RBP were engaged to determine the interaction motif between them by RNA pulldown-WB and EMSA. By cell-based therapy approach and by pharmacological approach, small interfering RNA (siRNA)-mediated lnc-PMIF knockdown were used in aged mice. The cell migration ability was evaluated by transwell assay and cell intratibial injection assay. The bone formation was evaluated by microCT analysis and bone morphometry analysis. Results: We reported that the decreased bone formation was accompanied by the reduced migration capacity of the bone marrow mesenchymal stem cells (BMSCs, the unique source of OPCs in bone marrow) in aged mice. We further identified that the long non-coding RNA PMIF (postulated migration inhibitory factor) (i.e., lnc-PMIF) was highly expressed in BMSCs from aged mice and responsible for the reduced migration capacity of aged OPCs to bone formation surface. Mechanistically, we found that lnc-PMIF could bind to human antigen R (HuR) for interrupting the HuR-β-actin mRNA interaction, therefore inhibit the expression of β-actin for suppressing the migration of aged OPCs. We also authenticated a functionally conserved human lncRNA ortholog of the murine lnc-PMIF. By cell-based therapy approach, we demonstrated that replenishing the aged BMSCs with small interfering RNA (siRNA)-mediated lnc-PMIF knockdown could promote bone formation in aged mice. By pharmacological approach, we showed that targeted delivery of lnc-PMIF siRNA approaching the OPCs around the bone formation surface could also promote bone formation in aged mice. Conclusion: Toward translational medicine, this study hints that targeting lnc-PMIF to facilitate aged OPCs migrating to bone formation surface could be a brand-new anabolic strategy for aging-related osteoporosis.
format Online
Article
Text
id pubmed-8039942
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Ivyspring International Publisher
record_format MEDLINE/PubMed
spelling pubmed-80399422021-04-14 Targeting long noncoding RNA PMIF facilitates osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging Li, Dijie Liu, Jin Yang, Chaofei Tian, Ye Yin, Chong Hu, Lifang Chen, Zhihao Zhao, Fan Zhang, Ru Lu, Aiping Zhang, Ge Qian, Airong Theranostics Research Paper Rationale: The migration of mesenchymal osteoprogenitor cells (OPCs) to bone formation surface is the initial step of osteoblastogenesis before they undergo osteoblast differentiation and maturation for governing bone formation. However, whether the migration capacity of OPCs is compromised during aging and how it contributes to the aging-related bone formation reduction remain unexplored. In the present study, we identified a migration inhibitory factor (i.e., long noncoding RNA PMIF) and examined whether targeting lnc-PMIF could facilitate osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging. Methods: Primary OPCs from young (6-momth-old) and aged (18-momth-old) C57BL/6 mice and stable lnc-PMIF knockdown/overexpression cell lines were used for in vitro and in vivo cell migration assay (i.e., wound healing assay, transwell assay and cell intratibial injection assay). RNA pulldown-MS/WB and RIP-qPCR were performed to identify the RNA binding proteins (RBPs) of lnc-PMIF. Truncations of lnc-PMIF and the identified RBP were engaged to determine the interaction motif between them by RNA pulldown-WB and EMSA. By cell-based therapy approach and by pharmacological approach, small interfering RNA (siRNA)-mediated lnc-PMIF knockdown were used in aged mice. The cell migration ability was evaluated by transwell assay and cell intratibial injection assay. The bone formation was evaluated by microCT analysis and bone morphometry analysis. Results: We reported that the decreased bone formation was accompanied by the reduced migration capacity of the bone marrow mesenchymal stem cells (BMSCs, the unique source of OPCs in bone marrow) in aged mice. We further identified that the long non-coding RNA PMIF (postulated migration inhibitory factor) (i.e., lnc-PMIF) was highly expressed in BMSCs from aged mice and responsible for the reduced migration capacity of aged OPCs to bone formation surface. Mechanistically, we found that lnc-PMIF could bind to human antigen R (HuR) for interrupting the HuR-β-actin mRNA interaction, therefore inhibit the expression of β-actin for suppressing the migration of aged OPCs. We also authenticated a functionally conserved human lncRNA ortholog of the murine lnc-PMIF. By cell-based therapy approach, we demonstrated that replenishing the aged BMSCs with small interfering RNA (siRNA)-mediated lnc-PMIF knockdown could promote bone formation in aged mice. By pharmacological approach, we showed that targeted delivery of lnc-PMIF siRNA approaching the OPCs around the bone formation surface could also promote bone formation in aged mice. Conclusion: Toward translational medicine, this study hints that targeting lnc-PMIF to facilitate aged OPCs migrating to bone formation surface could be a brand-new anabolic strategy for aging-related osteoporosis. Ivyspring International Publisher 2021-03-20 /pmc/articles/PMC8039942/ /pubmed/33859765 http://dx.doi.org/10.7150/thno.54477 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Li, Dijie
Liu, Jin
Yang, Chaofei
Tian, Ye
Yin, Chong
Hu, Lifang
Chen, Zhihao
Zhao, Fan
Zhang, Ru
Lu, Aiping
Zhang, Ge
Qian, Airong
Targeting long noncoding RNA PMIF facilitates osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging
title Targeting long noncoding RNA PMIF facilitates osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging
title_full Targeting long noncoding RNA PMIF facilitates osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging
title_fullStr Targeting long noncoding RNA PMIF facilitates osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging
title_full_unstemmed Targeting long noncoding RNA PMIF facilitates osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging
title_short Targeting long noncoding RNA PMIF facilitates osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging
title_sort targeting long noncoding rna pmif facilitates osteoprogenitor cells migrating to bone formation surface to promote bone formation during aging
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8039942/
https://www.ncbi.nlm.nih.gov/pubmed/33859765
http://dx.doi.org/10.7150/thno.54477
work_keys_str_mv AT lidijie targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT liujin targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT yangchaofei targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT tianye targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT yinchong targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT hulifang targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT chenzhihao targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT zhaofan targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT zhangru targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT luaiping targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT zhangge targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging
AT qianairong targetinglongnoncodingrnapmiffacilitatesosteoprogenitorcellsmigratingtoboneformationsurfacetopromoteboneformationduringaging