Annexin A5 derived from matrix vesicles protects against osteoporotic bone loss via mineralization

Abstract Matrix vesicles (MVs) have shown strong effects in diseases such as vascular ectopic calcification and pathological calcified osteoarthritis and in wound repair of the skeletal system due to their membranous vesicle characteristics and abundant calcium and phosphorus content. However, the r...

Full description

Bibliographic Details
Main Authors: Guanyue Su, Demao Zhang, Tiantian Li, Tong Pei, Jie Yang, Shasha Tu, Sijun Liu, Jie Ren, Yaojia Zhang, Mengmeng Duan, Xinrui Yang, Yang Shen, Chenchen Zhou, Jing Xie, Xiaoheng Liu
Format: Article
Language:English
Published: Nature Publishing Group 2023-11-01
Series:Bone Research
Online Access:https://doi.org/10.1038/s41413-023-00290-9
_version_ 1797630373685886976
author Guanyue Su
Demao Zhang
Tiantian Li
Tong Pei
Jie Yang
Shasha Tu
Sijun Liu
Jie Ren
Yaojia Zhang
Mengmeng Duan
Xinrui Yang
Yang Shen
Chenchen Zhou
Jing Xie
Xiaoheng Liu
author_facet Guanyue Su
Demao Zhang
Tiantian Li
Tong Pei
Jie Yang
Shasha Tu
Sijun Liu
Jie Ren
Yaojia Zhang
Mengmeng Duan
Xinrui Yang
Yang Shen
Chenchen Zhou
Jing Xie
Xiaoheng Liu
author_sort Guanyue Su
collection DOAJ
description Abstract Matrix vesicles (MVs) have shown strong effects in diseases such as vascular ectopic calcification and pathological calcified osteoarthritis and in wound repair of the skeletal system due to their membranous vesicle characteristics and abundant calcium and phosphorus content. However, the role of MVs in the progression of osteoporosis is poorly understood. Here, we report that annexin A5, an important component of the matrix vesicle membrane, plays a vital role in bone matrix homeostasis in the deterioration of osteoporosis. We first identified annexin A5 from adherent MVs but not dissociative MVs of osteoblasts and found that it could be sharply decreased in the bone matrix during the occurrence of osteoporosis based on ovariectomized mice. We then confirmed its potential in mediating the mineralization of the precursor osteoblast lineage via its initial binding with collagen type I to achieve MV adhesion and the subsequent activation of cellular autophagy. Finally, we proved its protective role in resisting bone loss by applying it to osteoporotic mice. Taken together, these data revealed the importance of annexin A5, originating from adherent MVs of osteoblasts, in bone matrix remodeling of osteoporosis and provided a new strategy for the treatment and intervention of bone loss.
first_indexed 2024-03-11T11:06:29Z
format Article
id doaj.art-5af0d59e7bea40b8bcc8ad0a20c670e9
institution Directory Open Access Journal
issn 2095-6231
language English
last_indexed 2024-03-11T11:06:29Z
publishDate 2023-11-01
publisher Nature Publishing Group
record_format Article
series Bone Research
spelling doaj.art-5af0d59e7bea40b8bcc8ad0a20c670e92023-11-12T12:09:49ZengNature Publishing GroupBone Research2095-62312023-11-0111111610.1038/s41413-023-00290-9Annexin A5 derived from matrix vesicles protects against osteoporotic bone loss via mineralizationGuanyue Su0Demao Zhang1Tiantian Li2Tong Pei3Jie Yang4Shasha Tu5Sijun Liu6Jie Ren7Yaojia Zhang8Mengmeng Duan9Xinrui Yang10Yang Shen11Chenchen Zhou12Jing Xie13Xiaoheng Liu14Institute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityState Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityState Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan UniversityState Key Laboratory of Oral Diseases, National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan UniversityInstitute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan UniversityAbstract Matrix vesicles (MVs) have shown strong effects in diseases such as vascular ectopic calcification and pathological calcified osteoarthritis and in wound repair of the skeletal system due to their membranous vesicle characteristics and abundant calcium and phosphorus content. However, the role of MVs in the progression of osteoporosis is poorly understood. Here, we report that annexin A5, an important component of the matrix vesicle membrane, plays a vital role in bone matrix homeostasis in the deterioration of osteoporosis. We first identified annexin A5 from adherent MVs but not dissociative MVs of osteoblasts and found that it could be sharply decreased in the bone matrix during the occurrence of osteoporosis based on ovariectomized mice. We then confirmed its potential in mediating the mineralization of the precursor osteoblast lineage via its initial binding with collagen type I to achieve MV adhesion and the subsequent activation of cellular autophagy. Finally, we proved its protective role in resisting bone loss by applying it to osteoporotic mice. Taken together, these data revealed the importance of annexin A5, originating from adherent MVs of osteoblasts, in bone matrix remodeling of osteoporosis and provided a new strategy for the treatment and intervention of bone loss.https://doi.org/10.1038/s41413-023-00290-9
spellingShingle Guanyue Su
Demao Zhang
Tiantian Li
Tong Pei
Jie Yang
Shasha Tu
Sijun Liu
Jie Ren
Yaojia Zhang
Mengmeng Duan
Xinrui Yang
Yang Shen
Chenchen Zhou
Jing Xie
Xiaoheng Liu
Annexin A5 derived from matrix vesicles protects against osteoporotic bone loss via mineralization
Bone Research
title Annexin A5 derived from matrix vesicles protects against osteoporotic bone loss via mineralization
title_full Annexin A5 derived from matrix vesicles protects against osteoporotic bone loss via mineralization
title_fullStr Annexin A5 derived from matrix vesicles protects against osteoporotic bone loss via mineralization
title_full_unstemmed Annexin A5 derived from matrix vesicles protects against osteoporotic bone loss via mineralization
title_short Annexin A5 derived from matrix vesicles protects against osteoporotic bone loss via mineralization
title_sort annexin a5 derived from matrix vesicles protects against osteoporotic bone loss via mineralization
url https://doi.org/10.1038/s41413-023-00290-9
work_keys_str_mv AT guanyuesu annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT demaozhang annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT tiantianli annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT tongpei annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT jieyang annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT shashatu annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT sijunliu annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT jieren annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT yaojiazhang annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT mengmengduan annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT xinruiyang annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT yangshen annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT chenchenzhou annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT jingxie annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization
AT xiaohengliu annexina5derivedfrommatrixvesiclesprotectsagainstosteoporoticbonelossviamineralization