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TAF15 regulates the BRD4/GREM1 axis and activates the gremlin-1-NF-κB pathway to promote OA progression

BACKGROUND: Anterior cruciate ligament (ACL) injury is recognized as a risk factor for osteoarthritis (OA) progression. Herein, the function of TAF15 in ACL injury-induced OA was investigated. METHODS: OA cell model and OA mouse model were established by interleukin-1 beta (IL-1β) stimulation and AC...

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Autores principales: Du, Xiufan, Xin, Ruomei, Chen, Xiaoyan, Wang, Guangji, Huang, Chunhang, Zhou, Kai, Zhang, Shunli
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japanese Society for Regenerative Medicine 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10366938/
https://www.ncbi.nlm.nih.gov/pubmed/37496731
http://dx.doi.org/10.1016/j.reth.2023.06.016
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author Du, Xiufan
Xin, Ruomei
Chen, Xiaoyan
Wang, Guangji
Huang, Chunhang
Zhou, Kai
Zhang, Shunli
author_facet Du, Xiufan
Xin, Ruomei
Chen, Xiaoyan
Wang, Guangji
Huang, Chunhang
Zhou, Kai
Zhang, Shunli
author_sort Du, Xiufan
collection PubMed
description BACKGROUND: Anterior cruciate ligament (ACL) injury is recognized as a risk factor for osteoarthritis (OA) progression. Herein, the function of TAF15 in ACL injury-induced OA was investigated. METHODS: OA cell model and OA mouse model were established by interleukin-1 beta (IL-1β) stimulation and ACL transection administration, respectively. The pathological changes were analyzed by histopathology. The mRNA and protein expressions were assessed using qRT-PCR, Western blot and IHC. Chondrocyte viability and apoptosis were examined by CCK8 assay and TUNEL staining, respectively. The interactions between TAF15, BRD4 and GREM1 were analyzed by RIP or ChIP assay. RESULTS: TAF15 expression was markedly elevated in OA, and its knockdown suppressed IL-1β-induced chondrocyte apoptosis and ECM degradation in vivo and cartilage pathological changes in vitro. TAF15 promoted BRD4 mRNA stability, and TAF15 silencing's repression on chondrocyte apoptosis and ECM degradation induced by IL-1β was abrogated following BRD4 overexpression. BRD4 promoted GREM1 expression by directly binding with GREM1. In addition, the GREM1/NF-κB pathway functioned as the downstream pathway of BRD4 in promoting OA progression. CONCLUSION: TAF15 upregulation facilitated chondrocyte apoptosis and ECM degradation during OA development by acting on the BRD4/GREM1/NF-κB axis, which provided a theoretical basis for the development of novel therapies for OA.
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spelling pubmed-103669382023-07-26 TAF15 regulates the BRD4/GREM1 axis and activates the gremlin-1-NF-κB pathway to promote OA progression Du, Xiufan Xin, Ruomei Chen, Xiaoyan Wang, Guangji Huang, Chunhang Zhou, Kai Zhang, Shunli Regen Ther Original Article BACKGROUND: Anterior cruciate ligament (ACL) injury is recognized as a risk factor for osteoarthritis (OA) progression. Herein, the function of TAF15 in ACL injury-induced OA was investigated. METHODS: OA cell model and OA mouse model were established by interleukin-1 beta (IL-1β) stimulation and ACL transection administration, respectively. The pathological changes were analyzed by histopathology. The mRNA and protein expressions were assessed using qRT-PCR, Western blot and IHC. Chondrocyte viability and apoptosis were examined by CCK8 assay and TUNEL staining, respectively. The interactions between TAF15, BRD4 and GREM1 were analyzed by RIP or ChIP assay. RESULTS: TAF15 expression was markedly elevated in OA, and its knockdown suppressed IL-1β-induced chondrocyte apoptosis and ECM degradation in vivo and cartilage pathological changes in vitro. TAF15 promoted BRD4 mRNA stability, and TAF15 silencing's repression on chondrocyte apoptosis and ECM degradation induced by IL-1β was abrogated following BRD4 overexpression. BRD4 promoted GREM1 expression by directly binding with GREM1. In addition, the GREM1/NF-κB pathway functioned as the downstream pathway of BRD4 in promoting OA progression. CONCLUSION: TAF15 upregulation facilitated chondrocyte apoptosis and ECM degradation during OA development by acting on the BRD4/GREM1/NF-κB axis, which provided a theoretical basis for the development of novel therapies for OA. Japanese Society for Regenerative Medicine 2023-07-17 /pmc/articles/PMC10366938/ /pubmed/37496731 http://dx.doi.org/10.1016/j.reth.2023.06.016 Text en © 2023 The Japanese Society for Regenerative Medicine. Production and hosting by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Du, Xiufan
Xin, Ruomei
Chen, Xiaoyan
Wang, Guangji
Huang, Chunhang
Zhou, Kai
Zhang, Shunli
TAF15 regulates the BRD4/GREM1 axis and activates the gremlin-1-NF-κB pathway to promote OA progression
title TAF15 regulates the BRD4/GREM1 axis and activates the gremlin-1-NF-κB pathway to promote OA progression
title_full TAF15 regulates the BRD4/GREM1 axis and activates the gremlin-1-NF-κB pathway to promote OA progression
title_fullStr TAF15 regulates the BRD4/GREM1 axis and activates the gremlin-1-NF-κB pathway to promote OA progression
title_full_unstemmed TAF15 regulates the BRD4/GREM1 axis and activates the gremlin-1-NF-κB pathway to promote OA progression
title_short TAF15 regulates the BRD4/GREM1 axis and activates the gremlin-1-NF-κB pathway to promote OA progression
title_sort taf15 regulates the brd4/grem1 axis and activates the gremlin-1-nf-κb pathway to promote oa progression
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10366938/
https://www.ncbi.nlm.nih.gov/pubmed/37496731
http://dx.doi.org/10.1016/j.reth.2023.06.016
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