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Melatonin enhances osteoblastogenesis of senescent bone marrow stromal cells through NSD2‐mediated chromatin remodelling

BACKGROUND: Aging‐associated osteoporosis is frequently seen in the elderly in clinic, but efficient managements are limited because of unclear nosogenesis. The current study aims to investigate the role of melatonin on senescent bone marrow stromal cells (BMSCs) and the underlying regulating mechan...

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Autores principales: Xie, Ying, Han, Na, Li, Feng, Wang, Lijuan, Liu, Gerui, Hu, Meilin, Wang, Sheng, Wei, Xuelei, Guo, Jing, Jiang, Hongmei, Wang, Jingjing, Li, Xin, Wang, Yixuan, Wang, Jingya, Bian, Xiyun, Zhu, Zhongjiao, Zhang, Hui, Liu, Chunhua, Liu, Xiaozhi, Liu, Zhiqiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8882236/
https://www.ncbi.nlm.nih.gov/pubmed/35220680
http://dx.doi.org/10.1002/ctm2.746
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author Xie, Ying
Han, Na
Li, Feng
Wang, Lijuan
Liu, Gerui
Hu, Meilin
Wang, Sheng
Wei, Xuelei
Guo, Jing
Jiang, Hongmei
Wang, Jingjing
Li, Xin
Wang, Yixuan
Wang, Jingya
Bian, Xiyun
Zhu, Zhongjiao
Zhang, Hui
Liu, Chunhua
Liu, Xiaozhi
Liu, Zhiqiang
author_facet Xie, Ying
Han, Na
Li, Feng
Wang, Lijuan
Liu, Gerui
Hu, Meilin
Wang, Sheng
Wei, Xuelei
Guo, Jing
Jiang, Hongmei
Wang, Jingjing
Li, Xin
Wang, Yixuan
Wang, Jingya
Bian, Xiyun
Zhu, Zhongjiao
Zhang, Hui
Liu, Chunhua
Liu, Xiaozhi
Liu, Zhiqiang
author_sort Xie, Ying
collection PubMed
description BACKGROUND: Aging‐associated osteoporosis is frequently seen in the elderly in clinic, but efficient managements are limited because of unclear nosogenesis. The current study aims to investigate the role of melatonin on senescent bone marrow stromal cells (BMSCs) and the underlying regulating mechanism. METHODS: Melatonin levels were tested by ELISA. Gene expression profiles were performed by RNA‐sequencing, enrichment of H3K36me2 on gene promoters was analyzed by Chromatin Immunoprecipitation Sequencing (ChIP‐seq), and chromatin accessibility was determined by Assay for Transposase‐Accessible Chromatin with high‐throughput sequencing (ATAC‐seq). Osteogenesis of BMSCs in vitro was measured by Alizarin Red and Alkaline Phosphatase staining, and in vivo effects of melatonin was assessed by histological staining and micro computed tomography (micro‐CT) scan. Correlation of NSD2 expression and severity of senile osteoporosis patients were analyzed by Pearson correlation. RESULTS: Melatonin levels were decreased during aging in human bone marrow, accompanied by downregulation of the histone methyltransferase nuclear receptor binding SET domain protein 2 (NSD2) expression in the senescent BMSCs. Melatonin stimulated the expression of NSD2 through MT1/2‐mediated signaling pathways, resulting in the rebalancing of H3K36me2 and H3K27me3 modifications to increase chromatin accessibility of the osteogenic genes, runt‐related transcription factor 2 (RUNX2) and bone gamma‐carboxyglutamate protein (BGLAP). Melatonin promoted osteogenesis of BMSCs in vitro, and alleviates osteoporosis progression in the aging mice. In clinic, severity of senile osteoporosis (SOP) was negatively correlated with melatonin level in bone marrow, as well as NSD2 expression in BMSCs. Similarly, melatonin remarkably enhanced osteogenic differentiation of BMSCs derived from SOP patients in vitro. CONCLUSIONS: Collectively, our study dissects previously unreported mechanistic insights into the epigenetic regulating machinery of melatonin in meliorating osteogenic differentiation of senescent BMSC, and provides evidence for application of melatonin in preventing aging‐associated bone loss.
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spelling pubmed-88822362022-03-02 Melatonin enhances osteoblastogenesis of senescent bone marrow stromal cells through NSD2‐mediated chromatin remodelling Xie, Ying Han, Na Li, Feng Wang, Lijuan Liu, Gerui Hu, Meilin Wang, Sheng Wei, Xuelei Guo, Jing Jiang, Hongmei Wang, Jingjing Li, Xin Wang, Yixuan Wang, Jingya Bian, Xiyun Zhu, Zhongjiao Zhang, Hui Liu, Chunhua Liu, Xiaozhi Liu, Zhiqiang Clin Transl Med Research Articles BACKGROUND: Aging‐associated osteoporosis is frequently seen in the elderly in clinic, but efficient managements are limited because of unclear nosogenesis. The current study aims to investigate the role of melatonin on senescent bone marrow stromal cells (BMSCs) and the underlying regulating mechanism. METHODS: Melatonin levels were tested by ELISA. Gene expression profiles were performed by RNA‐sequencing, enrichment of H3K36me2 on gene promoters was analyzed by Chromatin Immunoprecipitation Sequencing (ChIP‐seq), and chromatin accessibility was determined by Assay for Transposase‐Accessible Chromatin with high‐throughput sequencing (ATAC‐seq). Osteogenesis of BMSCs in vitro was measured by Alizarin Red and Alkaline Phosphatase staining, and in vivo effects of melatonin was assessed by histological staining and micro computed tomography (micro‐CT) scan. Correlation of NSD2 expression and severity of senile osteoporosis patients were analyzed by Pearson correlation. RESULTS: Melatonin levels were decreased during aging in human bone marrow, accompanied by downregulation of the histone methyltransferase nuclear receptor binding SET domain protein 2 (NSD2) expression in the senescent BMSCs. Melatonin stimulated the expression of NSD2 through MT1/2‐mediated signaling pathways, resulting in the rebalancing of H3K36me2 and H3K27me3 modifications to increase chromatin accessibility of the osteogenic genes, runt‐related transcription factor 2 (RUNX2) and bone gamma‐carboxyglutamate protein (BGLAP). Melatonin promoted osteogenesis of BMSCs in vitro, and alleviates osteoporosis progression in the aging mice. In clinic, severity of senile osteoporosis (SOP) was negatively correlated with melatonin level in bone marrow, as well as NSD2 expression in BMSCs. Similarly, melatonin remarkably enhanced osteogenic differentiation of BMSCs derived from SOP patients in vitro. CONCLUSIONS: Collectively, our study dissects previously unreported mechanistic insights into the epigenetic regulating machinery of melatonin in meliorating osteogenic differentiation of senescent BMSC, and provides evidence for application of melatonin in preventing aging‐associated bone loss. John Wiley and Sons Inc. 2022-02-27 /pmc/articles/PMC8882236/ /pubmed/35220680 http://dx.doi.org/10.1002/ctm2.746 Text en © 2022 The Authors. Clinical and Translational Medicine published by John Wiley & Sons Australia, Ltd on behalf of Shanghai Institute of Clinical Bioinformatics https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Xie, Ying
Han, Na
Li, Feng
Wang, Lijuan
Liu, Gerui
Hu, Meilin
Wang, Sheng
Wei, Xuelei
Guo, Jing
Jiang, Hongmei
Wang, Jingjing
Li, Xin
Wang, Yixuan
Wang, Jingya
Bian, Xiyun
Zhu, Zhongjiao
Zhang, Hui
Liu, Chunhua
Liu, Xiaozhi
Liu, Zhiqiang
Melatonin enhances osteoblastogenesis of senescent bone marrow stromal cells through NSD2‐mediated chromatin remodelling
title Melatonin enhances osteoblastogenesis of senescent bone marrow stromal cells through NSD2‐mediated chromatin remodelling
title_full Melatonin enhances osteoblastogenesis of senescent bone marrow stromal cells through NSD2‐mediated chromatin remodelling
title_fullStr Melatonin enhances osteoblastogenesis of senescent bone marrow stromal cells through NSD2‐mediated chromatin remodelling
title_full_unstemmed Melatonin enhances osteoblastogenesis of senescent bone marrow stromal cells through NSD2‐mediated chromatin remodelling
title_short Melatonin enhances osteoblastogenesis of senescent bone marrow stromal cells through NSD2‐mediated chromatin remodelling
title_sort melatonin enhances osteoblastogenesis of senescent bone marrow stromal cells through nsd2‐mediated chromatin remodelling
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8882236/
https://www.ncbi.nlm.nih.gov/pubmed/35220680
http://dx.doi.org/10.1002/ctm2.746
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