Literature DB >> 33919218

Metallothionein 3 Promotes Osteoblast Differentiation in C2C12 Cells via Reduction of Oxidative Stress.

Santie Li1,2, Myeong-Ji Kim1, Sung-Ho Lee1, Litai Jin2, Weitao Cong2, Hye-Gwang Jeong3, Kwang-Youl Lee1.   

Abstract

Metallothioneins (MTs) are intracellular cysteine-rich proteins, and their expressions are enhanced under stress conditions. MTs are recognized as having the ability to regulate redox balance in living organisms; however, their role in regulating osteoblast differentiation is still unclear. In this research, we found that the expression of MT3, one member of the MT protein family, was specifically upregulated in the differentiation process of C2C12 myoblasts treated with bone morphogenetic protein 4 (BMP4). Transfection with MT3-overexpressing plasmids in C2C12 cells enhanced their differentiation to osteoblasts, together with upregulating the protein expression of bone specific transcription factors runt-related gene 2 (Runx2), Osterix, and distal-less homeobox 5 (Dlx5). Additionally, MT3 knockdown performed the opposite. Further studies revealed that overexpression of MT3 decreased reactive oxygen species (ROS) production in C2C12 cells treated with BMP4, and MT3 silencing enhanced ROS production. Treating C2C12 cells with antioxidant N-acetylcysteine also promoted osteoblast differentiation, and upregulated Runx2/Osterix/Dlx5, while ROS generator antimycin A treatment performed the opposite. Finally, antimycin A treatment inhibited osteoblast differentiation and Runx2/Osterix/Dlx5 expression in MT3-overexpressing C2C12 cells. These findings identify the role of MT3 in osteoblast differentiation and indicate that MT3 may have interesting potential in the field of osteogenesis research.

Entities:  

Keywords:  distal-less homeobox 5; metallothinnein 3; osteoblast differentiation; osterix; oxidative stress; runt-related gene 2

Mesh:

Substances:

Year:  2021        PMID: 33919218     DOI: 10.3390/ijms22094312

Source DB:  PubMed          Journal:  Int J Mol Sci        ISSN: 1422-0067            Impact factor:   5.923


  47 in total

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Journal:  Biochem J       Date:  2011-01-15       Impact factor: 3.857

9.  Organization and assembly of metal-thiolate clusters in epithelium-specific metallothionein-4.

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10.  Systemic bone loss, impaired osteogenic activity and type I muscle fiber atrophy in mice with elastase-induced pulmonary emphysema: Establishment of a COPD-related osteoporosis mouse model.

Authors:  Manabu Tsukamoto; Toshiharu Mori; Ke-Yong Wang; Yasuaki Okada; Hokuto Fukuda; Keisuke Naito; Yoshiaki Yamanaka; Ken Sabanai; Eiichiro Nakamura; Kazuhiro Yatera; Akinori Sakai
Journal:  Bone       Date:  2018-10-17       Impact factor: 4.398

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  2 in total

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