Cargando…

MicroRNA-375 exacerbates knee osteoarthritis through repressing chondrocyte autophagy by targeting ATG2B

Objective: This study aimed to explore the underlying mechanism of miR-375 in exacerbating osteoarthritis (OA). Results: MiR-375 expression were upregulated in OA cartilage tissues, whereas ATG2B expression was decreased. MiR-375 targeted ATG2B 3’ UTR and inhibited its expression in the chondrocytes...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Hongxing, Li, Zhiling, Pi, Yigang, Chen, Yang, Mei, Lin, Luo, Yong, Xie, Jingping, Mao, Xinzhan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7202526/
https://www.ncbi.nlm.nih.gov/pubmed/32335541
http://dx.doi.org/10.18632/aging.103073
_version_ 1783529717703376896
author Li, Hongxing
Li, Zhiling
Pi, Yigang
Chen, Yang
Mei, Lin
Luo, Yong
Xie, Jingping
Mao, Xinzhan
author_facet Li, Hongxing
Li, Zhiling
Pi, Yigang
Chen, Yang
Mei, Lin
Luo, Yong
Xie, Jingping
Mao, Xinzhan
author_sort Li, Hongxing
collection PubMed
description Objective: This study aimed to explore the underlying mechanism of miR-375 in exacerbating osteoarthritis (OA). Results: MiR-375 expression were upregulated in OA cartilage tissues, whereas ATG2B expression was decreased. MiR-375 targeted ATG2B 3’ UTR and inhibited its expression in the chondrocytes, and then suppressed autophagy and promoted endoplasmic reticulum stress (ERs). The apoptosis rate of chondrocytes was increased after being transfected with miR-375 mimics. In vivo results further verified that inhibition of miR-375 could relieve OA-related symptoms. Conclusion: miR-375 can inhibit the expression of ATG2B in chondrocytes, suppress autophagy and promote the ERs. It suggests that miR-375 could be considered to be a key therapy target for OA. Methods: Differential expression analyses for mRNA and miRNA microarray datasets from ArrayExpress were performed. MiR-375 and ATG2B expressions in cartilage tissues were detected by qRT-PCR. Dual luciferase assay was applied to verify the targeting relationship between ATG2B and miR-375. In vitro, the role of miR-375 on chondrocyte autophagy and ERs was investigated by western blot and immunofluorescence. The apoptotic rate was quantified by flow cytometry. In vivo, OA mice model was established, HE and Safranin O and Fast Green staining, as well as the OARSI and modified Mankin scores, were applied to measure the OA cartilage damage severity.
format Online
Article
Text
id pubmed-7202526
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Impact Journals
record_format MEDLINE/PubMed
spelling pubmed-72025262020-05-11 MicroRNA-375 exacerbates knee osteoarthritis through repressing chondrocyte autophagy by targeting ATG2B Li, Hongxing Li, Zhiling Pi, Yigang Chen, Yang Mei, Lin Luo, Yong Xie, Jingping Mao, Xinzhan Aging (Albany NY) Research Paper Objective: This study aimed to explore the underlying mechanism of miR-375 in exacerbating osteoarthritis (OA). Results: MiR-375 expression were upregulated in OA cartilage tissues, whereas ATG2B expression was decreased. MiR-375 targeted ATG2B 3’ UTR and inhibited its expression in the chondrocytes, and then suppressed autophagy and promoted endoplasmic reticulum stress (ERs). The apoptosis rate of chondrocytes was increased after being transfected with miR-375 mimics. In vivo results further verified that inhibition of miR-375 could relieve OA-related symptoms. Conclusion: miR-375 can inhibit the expression of ATG2B in chondrocytes, suppress autophagy and promote the ERs. It suggests that miR-375 could be considered to be a key therapy target for OA. Methods: Differential expression analyses for mRNA and miRNA microarray datasets from ArrayExpress were performed. MiR-375 and ATG2B expressions in cartilage tissues were detected by qRT-PCR. Dual luciferase assay was applied to verify the targeting relationship between ATG2B and miR-375. In vitro, the role of miR-375 on chondrocyte autophagy and ERs was investigated by western blot and immunofluorescence. The apoptotic rate was quantified by flow cytometry. In vivo, OA mice model was established, HE and Safranin O and Fast Green staining, as well as the OARSI and modified Mankin scores, were applied to measure the OA cartilage damage severity. Impact Journals 2020-04-26 /pmc/articles/PMC7202526/ /pubmed/32335541 http://dx.doi.org/10.18632/aging.103073 Text en Copyright © 2020 Li et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Li, Hongxing
Li, Zhiling
Pi, Yigang
Chen, Yang
Mei, Lin
Luo, Yong
Xie, Jingping
Mao, Xinzhan
MicroRNA-375 exacerbates knee osteoarthritis through repressing chondrocyte autophagy by targeting ATG2B
title MicroRNA-375 exacerbates knee osteoarthritis through repressing chondrocyte autophagy by targeting ATG2B
title_full MicroRNA-375 exacerbates knee osteoarthritis through repressing chondrocyte autophagy by targeting ATG2B
title_fullStr MicroRNA-375 exacerbates knee osteoarthritis through repressing chondrocyte autophagy by targeting ATG2B
title_full_unstemmed MicroRNA-375 exacerbates knee osteoarthritis through repressing chondrocyte autophagy by targeting ATG2B
title_short MicroRNA-375 exacerbates knee osteoarthritis through repressing chondrocyte autophagy by targeting ATG2B
title_sort microrna-375 exacerbates knee osteoarthritis through repressing chondrocyte autophagy by targeting atg2b
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7202526/
https://www.ncbi.nlm.nih.gov/pubmed/32335541
http://dx.doi.org/10.18632/aging.103073
work_keys_str_mv AT lihongxing microrna375exacerbateskneeosteoarthritisthroughrepressingchondrocyteautophagybytargetingatg2b
AT lizhiling microrna375exacerbateskneeosteoarthritisthroughrepressingchondrocyteautophagybytargetingatg2b
AT piyigang microrna375exacerbateskneeosteoarthritisthroughrepressingchondrocyteautophagybytargetingatg2b
AT chenyang microrna375exacerbateskneeosteoarthritisthroughrepressingchondrocyteautophagybytargetingatg2b
AT meilin microrna375exacerbateskneeosteoarthritisthroughrepressingchondrocyteautophagybytargetingatg2b
AT luoyong microrna375exacerbateskneeosteoarthritisthroughrepressingchondrocyteautophagybytargetingatg2b
AT xiejingping microrna375exacerbateskneeosteoarthritisthroughrepressingchondrocyteautophagybytargetingatg2b
AT maoxinzhan microrna375exacerbateskneeosteoarthritisthroughrepressingchondrocyteautophagybytargetingatg2b