MiR-503 Promotes Bone Formation in Distraction Osteogenesis through Suppressing Smurf1 Expression

Abstract Distraction osteogenesis (DO) is a unique technique for promoting bone formation in clinical practice. However the underlying mechanism remains elusive. As epigenetic mediators, microRNAs have been reported to play important roles in regulating osteogenesis. In this study, after successfull...

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Main Authors: Yuxin Sun, Jia Xu, Liangliang Xu, Jinfang Zhang, Kaiming Chan, Xiaohua Pan, Gang Li
Format: Article
Language:English
Published: Nature Publishing Group 2017-03-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-017-00466-4
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spelling doaj-043522b641d740558735693d5fad70a12020-12-08T02:54:03ZengNature Publishing GroupScientific Reports2045-23222017-03-017111010.1038/s41598-017-00466-4MiR-503 Promotes Bone Formation in Distraction Osteogenesis through Suppressing Smurf1 ExpressionYuxin Sun0Jia Xu1Liangliang Xu2Jinfang Zhang3Kaiming Chan4Xiaohua Pan5Gang Li6Department of Orthopaedics and Traumatology, Bao-An District People’s HospitalDepartment of Orthopaedic Surgery, Shanghai Jiaotong University Affiliated Sixth People’s HospitalDepartment of Orthopaedics & Traumatology, Li Ka Shing Institute of Health Sciences and Lui Che Woo Institute of Innovative Medicine, Faculty of Medicine, The Chinese University of Hong Kong, Prince of Wales HospitalDepartment of Orthopaedics & Traumatology, Li Ka Shing Institute of Health Sciences and Lui Che Woo Institute of Innovative Medicine, Faculty of Medicine, The Chinese University of Hong Kong, Prince of Wales HospitalDepartment of Orthopaedics & Traumatology, Li Ka Shing Institute of Health Sciences and Lui Che Woo Institute of Innovative Medicine, Faculty of Medicine, The Chinese University of Hong Kong, Prince of Wales HospitalDepartment of Orthopaedics and Traumatology, Bao-An District People’s HospitalDepartment of Orthopaedics and Traumatology, Bao-An District People’s HospitalAbstract Distraction osteogenesis (DO) is a unique technique for promoting bone formation in clinical practice. However the underlying mechanism remains elusive. As epigenetic mediators, microRNAs have been reported to play important roles in regulating osteogenesis. In this study, after successfully established the DO model of rats, a microRNA microarray was performed to find molecular targets for DO. Total 100 microRNAs were identified as differently expressed, with miR-503 being one of the most significantly up-regulated miRNAs in DO. The further investigation also showed that miR-503 was upregulated during osteogenesis in mesenchymal stem cells of rats, and overexpression of miR-503 significantly promoted osteogenesis in vitro and accelerated mineralization in DO process in vivo. By using bioinformatic investigations and luciferase activities, we successfully demonstrated that Smurf1, a negative regulator of osteogenesis, was a real target of miR-503. Furthermore, Smurf1 knockdown promoted osteogenesis and antagomir-503 abolished the promotive effect, suggesting that miR-503 mediated osteogenic differentiation via suppressing Smurf1 expression. To sum up, these findings indicated that miR-503 promoted osteogenesis and accelerated bone formation, which may shed light on the development for a potential therapeutic target for bone repair.https://doi.org/10.1038/s41598-017-00466-4
collection DOAJ
language English
format Article
sources DOAJ
author Yuxin Sun
Jia Xu
Liangliang Xu
Jinfang Zhang
Kaiming Chan
Xiaohua Pan
Gang Li
spellingShingle Yuxin Sun
Jia Xu
Liangliang Xu
Jinfang Zhang
Kaiming Chan
Xiaohua Pan
Gang Li
MiR-503 Promotes Bone Formation in Distraction Osteogenesis through Suppressing Smurf1 Expression
Scientific Reports
author_facet Yuxin Sun
Jia Xu
Liangliang Xu
Jinfang Zhang
Kaiming Chan
Xiaohua Pan
Gang Li
author_sort Yuxin Sun
title MiR-503 Promotes Bone Formation in Distraction Osteogenesis through Suppressing Smurf1 Expression
title_short MiR-503 Promotes Bone Formation in Distraction Osteogenesis through Suppressing Smurf1 Expression
title_full MiR-503 Promotes Bone Formation in Distraction Osteogenesis through Suppressing Smurf1 Expression
title_fullStr MiR-503 Promotes Bone Formation in Distraction Osteogenesis through Suppressing Smurf1 Expression
title_full_unstemmed MiR-503 Promotes Bone Formation in Distraction Osteogenesis through Suppressing Smurf1 Expression
title_sort mir-503 promotes bone formation in distraction osteogenesis through suppressing smurf1 expression
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2017-03-01
description Abstract Distraction osteogenesis (DO) is a unique technique for promoting bone formation in clinical practice. However the underlying mechanism remains elusive. As epigenetic mediators, microRNAs have been reported to play important roles in regulating osteogenesis. In this study, after successfully established the DO model of rats, a microRNA microarray was performed to find molecular targets for DO. Total 100 microRNAs were identified as differently expressed, with miR-503 being one of the most significantly up-regulated miRNAs in DO. The further investigation also showed that miR-503 was upregulated during osteogenesis in mesenchymal stem cells of rats, and overexpression of miR-503 significantly promoted osteogenesis in vitro and accelerated mineralization in DO process in vivo. By using bioinformatic investigations and luciferase activities, we successfully demonstrated that Smurf1, a negative regulator of osteogenesis, was a real target of miR-503. Furthermore, Smurf1 knockdown promoted osteogenesis and antagomir-503 abolished the promotive effect, suggesting that miR-503 mediated osteogenic differentiation via suppressing Smurf1 expression. To sum up, these findings indicated that miR-503 promoted osteogenesis and accelerated bone formation, which may shed light on the development for a potential therapeutic target for bone repair.
url https://doi.org/10.1038/s41598-017-00466-4
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