Connexin43 regulates osteoprotegerin expression via ERK1/2-dependent recruitment of Sp1

被引:10
|
作者
Gupta, Aditi [1 ]
Leser, Jenna M. [1 ]
Gould, Nicole R. [1 ]
Buo, Atum M. [1 ]
Moorer, Megan C. [1 ]
Stains, Joseph P. [1 ]
机构
[1] Univ Maryland, Sch Med, Dept Orthopaed, Baltimore, MD 21201 USA
基金
美国国家卫生研究院;
关键词
Gap junctions; Connexin43; Osteoblast; Osteoprotegerin; Osteoclast; HEMICHANNEL-INDEPENDENT ACTIONS; MARROW STROMAL CELLS; GAP-JUNCTIONS; OSTEOBLAST; BONE; DIFFERENTIATION; TRANSCRIPTION; GROWTH; RESPONSIVENESS; COMMUNICATION;
D O I
10.1016/j.bbrc.2018.12.173
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In bone, connexin43 expression in cells of the osteoblast lineage plays an important role in restraining osteoclastogenesis and bone resorption. While there is a consensus around the notion that the anti-osteoclastogenic factor, osteoprotegerin, is a driver of this effect, how connexin43 regulates osteoprotegerin gene expression is unclear. Here, we show that loss of connexin43 decreased osteoprotegerin gene expression and reduced ERK1/2 activation. Conversely, overexpression of connexin43 increased osteoprotegerin expression and enhanced ERK1/2 activation. This increase in phospho-ERK1/2 is required for connexin43 to induce transcription from the osteoprotegerin proximal promoter. Connexin43 increased promoter activity via a specific 200 base pair region of the osteoprotegerin promoter located at -1486 to -1286 with respect to the transcriptional start site, a region which includes four Sp1 binding elements. Further, activation of this promoter region required an intact functional connexin43, as hypomorphic or dominant negative connexin43 mutant constructs, including one with increased hemichannel activity, were unable to stimulate osteoprotegerin expression as strongly as wild type connexin43. Using chromatin immunoprecipitations, we show that connexin43 expression enhanced the recruitment of Sp1, but not Runx2, to the osteoprotegerin proximal promoter. In total, these data show that connexin43-dependent gap junctional communication among osteoblast cells permits efficient ERK1/2 activation. ERK1/2 signaling promotes the recruitment of the potent transcriptional activator, Sp1, to the osteoprotegerin proximal promoter, resulting in robust transcription of anti-osteoclastogenic factor, osteoprotegerin. (C) 2019 Elsevier Inc. All rights reserved.
引用
收藏
页码:728 / 733
页数:6
相关论文
共 50 条
  • [31] ERK1/2 regulates epidermal chemokine expression and skin inflammation
    Pastore, S
    Mascia, F
    Mariotti, F
    Dattilo, C
    Mariani, V
    Girolomoni, G
    JOURNAL OF IMMUNOLOGY, 2005, 174 (08): : 5047 - 5056
  • [32] Intermittent parathyroid hormone promotes cementogenesis in a PKA- and ERK1/2-dependent manner
    Xu, Yang
    Lv, Chunxiao
    Zhang, Jiawei
    Li, Yuyu
    Li, Tiancheng
    Zhang, Cheng
    Chen, Jianwei
    Bai, Ding
    Yin, Xing
    Zou, Shujuan
    JOURNAL OF PERIODONTOLOGY, 2019, 90 (09) : 1002 - 1013
  • [33] Nuclear accumulation of symplekin promotes cellular proliferation and dedifferentiation in an ERK1/2-dependent manner
    Zhang, Chen
    Mao, Hai-Lei
    Cao, Yi
    SCIENTIFIC REPORTS, 2017, 7
  • [34] GABAergic signaling facilitates breast cancer metastasis by promoting ERK1/2-dependent phosphorylation
    Zhang, Depu
    Li, Xiaowei
    Yao, Ziming
    Wei, Chuanfei
    Ning, Nannan
    Li, Jingxin
    CANCER LETTERS, 2014, 348 (1-2) : 100 - 108
  • [35] ERK1/2-dependent BDNF synthesis and signaling is required for the antidepressant effect of microglia stimulation
    Lu, Xu
    Liu, Huijun
    Cai, Zixuan
    Hu, Zhichao
    Ye, Minxiu
    Gu, Yue
    Wang, Yue
    Wang, Dan
    Lu, Qun
    Shen, Zhongxia
    Shen, Xinhua
    Huang, Chao
    BRAIN BEHAVIOR AND IMMUNITY, 2022, 106 : 147 - 160
  • [36] Transforming growth factor-β1 up-regulates connexin43 expression in human granulosa cells
    Chen, Yu-Ching
    Chang, Hsun-Ming
    Cheng, Jung-Chien
    Tsai, Horng-Der
    Wu, Cheng-Hsuan
    Leung, Peter C. K.
    HUMAN REPRODUCTION, 2015, 30 (09) : 2190 - 2201
  • [37] ERK1/2-dependent TSPO overactivation associates with the loss of mitophagy and mitochondrial respiration in ALS
    Andrea Magrì
    Cristiana Lucia Rita Lipari
    Pierpaolo Risiglione
    Stefania Zimbone
    Francesca Guarino
    Antonella Caccamo
    Angela Messina
    Cell Death & Disease, 14
  • [38] Cytotoxicity of paraquat in microglial cells:: Involvement of PKCδ- and ERK1/2-dependent NADPH oxidase
    Miller, Rebecca L.
    Sun, Grace Y.
    Sun, Albert Y.
    BRAIN RESEARCH, 2007, 1167 : 129 - 139
  • [39] ERK1/2-dependent phosphorylation and nuclear translocation of PKM2 promotes the Warburg effect
    Weiwei Yang
    Yanhua Zheng
    Yan Xia
    Haitao Ji
    Xiaomin Chen
    Fang Guo
    Costas A. Lyssiotis
    Kenneth Aldape
    Lewis C. Cantley
    Zhimin Lu
    Nature Cell Biology, 2012, 14 : 1295 - 1304
  • [40] Icariin stimulates the proliferation of rat Sertoli cells in an ERK1/2-dependent manner in vitro
    Nan, Y.
    Zhang, X.
    Yang, G.
    Xie, J.
    Lu, Z.
    Wang, W.
    Ni, X.
    Cao, X.
    Ma, J.
    Wang, Z.
    ANDROLOGIA, 2014, 46 (01) : 9 - 16