Literature DB >> 33465813

Cross-talk Between Histone and DNA Methylation Mediates Bone Loss in Hind Limb Unloading.

Bing Li1, Jie Zhao2, Jianxiong Ma3, Weibo Chen4, Ce Zhou4, Wuzeng Wei1, Shuai Li1, Guomin Li1, Guosheng Xin3, Yang Zhang3, Jun Liu1, Yinsong Wang4, Xinlong Ma1,2,3.   

Abstract

Bone loss induced by mechanical unloading is a common skeletal disease, but the precise mechanism remains unclear. The current study investigated the role of histone methylation, a key epigenetic marker, and its cross-talk with DNA methylation in bone loss induced by mechanical unloading. The expression of G9a, ubiquitin-like with PHD and ring finger domains 1 (UHRF1), and DNA methylation transferase 1 (DNMT1) were increased in hind limb unloading (HLU) rats. This was accompanied by an increased level of histone H3 lysine 9 (H3K9) di-/tri-methylation at lncH19 promoter. Then, alteration of G9a, DNMT1, or UHRF1 expression significantly affected lncH19 level and osteogenic activity in UMR106 cells. Osteogenic gene expression and matrix mineralization were robustly promoted after simultaneous knockdown of G9a, DNMT1, and UHRF1. Furthermore, physical interactions of lncH19 promoter with G9a and DNMT1, as well as direct interactions among DNMT1, G9a, and UHRF1 were detected. Importantly, overexpression of DNMT1, G9a, or UHRF1, respectively, resulted in enrichment of H3K9me2/me3 and 5-methylcytosine at lncH19 promoter. Finally, in vivo rescue experiments indicated that knockdown of DNMT1, G9a, or UHRF1 significantly relieved bone loss in HLU rats. In conclusion, our research demonstrated the critical role of H3K9 methylation and its cross-talk with DNA methylation in regulating lncH19 expression and bone loss in HLU rats. Combined targeting of DNMT1, G9a, and UHRF1 could be a promising strategy for the treatment of bone loss induced by mechanical unloading.
© 2021 American Society for Bone and Mineral Research (ASBMR). © 2021 American Society for Bone and Mineral Research (ASBMR).

Entities:  

Keywords:  CROSS-TALK; DNA METHYLATION; EPIGENETIC MODIFICATION; HISTONE METHYLATION; LncH19; MECHANICAL UNLOADING

Year:  2021        PMID: 33465813     DOI: 10.1002/jbmr.4253

Source DB:  PubMed          Journal:  J Bone Miner Res        ISSN: 0884-0431            Impact factor:   6.741


  4 in total

1.  TET3 Mediates 5hmC Level and Promotes Tumorigenesis by Activating AMPK Pathway in Papillary Thyroid Cancer.

Authors:  Jiadong Chi; Wei Zhang; Yigong Li; Jie Zhao; Xiangqian Zheng; Ming Gao
Journal:  Int J Endocrinol       Date:  2022-06-15       Impact factor: 2.803

2.  Exploring the Association between Glutathione Metabolism and Ferroptosis in Osteoblasts with Disuse Osteoporosis and the Key Genes Connecting them.

Authors:  Yuanlin Wang; Yiming Jia; Yujing Xu; Xingkun Liu; Zheng Wang; Yang Liu; Bing Li; Jun Liu
Journal:  Comput Math Methods Med       Date:  2022-05-12       Impact factor: 2.809

3.  RNA m6A Alterations Induced by Biomineralization Nanoparticles: A Proof-of-Concept Study of Epitranscriptomics for Nanotoxicity Evaluation.

Authors:  Jinbin Pan; Jiaojiao Wang; Kun Fang; Wenjing Hou; Bing Li; Jie Zhao; Xinlong Ma
Journal:  Nanoscale Res Lett       Date:  2022-02-05       Impact factor: 5.418

4.  Calycosin prevents bone loss induced by hindlimb unloading.

Authors:  Xiang Jin; Hong Wang; Xuechao Liang; Kang Ru; Xiaoni Deng; Shuo Gao; Wuxia Qiu; Ying Huai; Jiaqi Zhang; Linbin Lai; Fan Li; Zhiping Miao; Wenjuan Zhang; Airong Qian
Journal:  NPJ Microgravity       Date:  2022-07-06       Impact factor: 4.970

  4 in total

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