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The Transcriptional Modulator Interferon-Related Developmental Regulator 1 in Osteoblasts Suppresses Bone Formation and Promotes Bone Resorption.

作者信息

Iezaki Takashi, Onishi Yuki, Ozaki Kakeru, Fukasawa Kazuya, Takahata Yoshifumi, Nakamura Yukari, Fujikawa Koichi, Takarada Takeshi, Yoneda Yukio, Yamashita Yui, Shioi Go, Hinoi Eiichi

机构信息

Laboratory of Molecular Pharmacology, Division of Pharmaceutical Sciences, Kanazawa University Graduate School, Kanazawa, Ishikawa, Japan.

Animal Resource Development Unit, Division of Bio-function Dynamics Imaging, RIKEN Center for Life Science Technologies (CLST), Kobe, Hyogo, Japan.

出版信息

J Bone Miner Res. 2016 Mar;31(3):573-84. doi: 10.1002/jbmr.2720. Epub 2015 Oct 22.


DOI:10.1002/jbmr.2720
PMID:26391411
Abstract

Bone homeostasis is maintained by the synergistic actions of bone-resorbing osteoclasts and bone-forming osteoblasts. Although interferon-related developmental regulator 1 (Ifrd1) has been identified as a transcriptional coactivator/repressor in various cells, little attention has been paid to its role in osteoblastogenesis and bone homeostasis thus far. Here, we show that Ifrd1 is a critical mediator of both the cell-autonomous regulation of osteoblastogenesis and osteoblast-dependent regulation of osteoclastogenesis. Osteoblast-specific deletion of murine Ifrd1 increased bone formation and decreased bone resorption, causing high bone mass. Ifrd1 deficiency enhanced osteoblast differentiation and maturation along with increased expression of Runx2 and osterix (Osx). Mechanistically, Ifrd1 deficiency increased the acetylation status of p65, a component of NF-κB, at residues K122 and K123 via the attenuation of the interaction between p65 and histone deacetylase (HDAC). This led to the nuclear export of p65 and a decrease in NF-κB-dependent Smad7 expression and the subsequent enhancement of Smad1/Smad5/Smad8-dependent transcription. Moreover, a high bone mass phenotype in the osteoblast-specific deletion of Ifrd1 was markedly rescued by the introduction of one Osx-floxed allele but not of Runx2-floxed allele. Coculture experiments revealed that Ifrd1-deficient osteoblasts have a higher osteoprotegerin (OPG) expression and a lower ability to support osteoclastogenesis. Ifrd1 deficiency attenuated the interaction between β-catenin and HDAC, subsequently increasing the acetylation of β-catenin at K49, leading to its nuclear accumulation and the activation of the β-catenin-dependent transcription of OPG. Collectively, the expression of Ifrd1 in osteoblasts repressed osteoblastogenesis and activated osteoclastogenesis through modulating the NF-κB/Smad/Osx and β-catenin/OPG pathways, respectively. These findings suggest that Ifrd1 has a pivotal role in bone homeostasis through its expression in osteoblasts in vivo and represents a therapeutic target for bone diseases.

摘要

相似文献

[1]
The Transcriptional Modulator Interferon-Related Developmental Regulator 1 in Osteoblasts Suppresses Bone Formation and Promotes Bone Resorption.

J Bone Miner Res. 2016-3

[2]
Transcriptional Modulator Ifrd1 Regulates Osteoclast Differentiation through Enhancing the NF-κB/NFATc1 Pathway.

Mol Cell Biol. 2016-9-12

[3]
[Transcription Regulators and Bone Metabolism].

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[4]
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[5]
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J Bone Miner Res. 2018-2-21

[6]
Lrp4 in osteoblasts suppresses bone formation and promotes osteoclastogenesis and bone resorption.

Proc Natl Acad Sci U S A. 2015-3-17

[7]
Postnatal deletion of β-catenin in osterix-expressing cells is necessary for bone growth and intermittent PTH-induced bone gain.

J Bone Miner Metab. 2017-11-9

[8]
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Biochim Biophys Acta Mol Basis Dis. 2021-5-1

[9]
Regulatory mechanisms of osteoblast and osteoclast differentiation.

Oral Dis. 2002-5

[10]
Runx2 Controls Bone Resorption through the Down-Regulation of the Wnt Pathway in Osteoblasts.

Am J Pathol. 2016-6

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