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MEF2C通过c-FOS调节破骨细胞生成和病理性骨吸收。

MEF2C regulates osteoclastogenesis and pathologic bone resorption via c-FOS.

作者信息

Fujii Takayuki, Murata Koichi, Mun Se-Hwan, Bae Seyeon, Lee Ye Ji, Pannellini Tannia, Kang Kyuho, Oliver David, Park-Min Kyung-Hyun, Ivashkiv Lionel B

机构信息

Arthritis and Tissue Degeneration Program and David Z. Rosensweig Genomics Research Center, Hospital for Special Surgery, New York, NY, 10021, USA.

Department of Orthopaedic Surgery, Kyoto University Graduate School of Medicine, Sakyo, Kyoto, 606-8507, Japan.

出版信息

Bone Res. 2021 Jan 11;9(1):4. doi: 10.1038/s41413-020-00120-2.

Abstract

Osteoporosis is a metabolic bone disease with dysregulated coupling between bone resorption and bone formation, which results in decreased bone mineral density. The MEF2C locus, which encodes the transcription factor MADS box transcription enhancer factor 2, polypeptide C (MEF2C), is strongly associated with adult osteoporosis and osteoporotic fractures. Although the role of MEF2C in bone and cartilage formation by osteoblasts, osteocytes, and chondrocytes has been studied, the role of MEF2C in osteoclasts, which mediate bone resorption, remains unclear. In this study, we identified MEF2C as a positive regulator of human and mouse osteoclast differentiation. While decreased MEF2C expression resulted in diminished osteoclastogenesis, ectopic expression of MEF2C enhanced osteoclast generation. Using transcriptomic and bioinformatic approaches, we found that MEF2C promotes the RANKL-mediated induction of the transcription factors c-FOS and NFATc1, which play a key role in osteoclastogenesis. Mechanistically, MEF2C binds to FOS regulatory regions to induce c-FOS expression, leading to the activation of NFATC1 and downstream osteoclastogenesis. Inducible deletion of Mef2c in mice resulted in increased bone mass under physiological conditions and protected mice from bone erosion by diminishing osteoclast formation in K/BxN serum induced arthritis, a murine model of inflammatory arthritis. Our findings reveal direct regulation of osteoclasts by MEF2C, thus adding osteoclasts as a cell type in which altered MEF2C expression or function can contribute to pathological bone remodeling.

摘要

骨质疏松症是一种代谢性骨病,其骨吸收与骨形成之间的偶联失调,导致骨矿物质密度降低。MEF2C基因座编码转录因子MADS盒转录增强因子2多肽C(MEF2C),与成人骨质疏松症和骨质疏松性骨折密切相关。尽管已经研究了MEF2C在成骨细胞、骨细胞和软骨细胞的骨与软骨形成中的作用,但MEF2C在介导骨吸收的破骨细胞中的作用仍不清楚。在本研究中,我们确定MEF2C是人和小鼠破骨细胞分化的正向调节因子。MEF2C表达降低导致破骨细胞生成减少,而MEF2C的异位表达则增强破骨细胞生成。使用转录组学和生物信息学方法,我们发现MEF2C促进RANKL介导的转录因子c-FOS和NFATc1的诱导,这在破骨细胞生成中起关键作用。从机制上讲,MEF2C与FOS调控区域结合以诱导c-FOS表达,从而导致NFATC1激活和下游破骨细胞生成。在小鼠中可诱导性敲除Mef2c导致生理条件下骨量增加,并通过减少K/BxN血清诱导的关节炎(一种炎症性关节炎小鼠模型)中的破骨细胞形成来保护小鼠免受骨侵蚀。我们的研究结果揭示了MEF2C对破骨细胞的直接调节作用,从而将破骨细胞作为一种细胞类型,其中MEF2C表达或功能的改变可导致病理性骨重塑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d03/7797478/781d537d0b8c/41413_2020_120_Fig1_HTML.jpg

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