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肌肉转录因子MyoD通过刺激osterix启动子来促进成骨细胞分化。

The muscle transcription factor MyoD promotes osteoblast differentiation by stimulation of the Osterix promoter.

作者信息

Hewitt Jocelyn, Lu Xiaghuai, Gilbert Linda, Nanes Mark S

机构信息

Division of Endocrinology, Metabolism, and Lipids, Department of Medicine, Emory University, Atlanta, GA 30033, USA.

出版信息

Endocrinology. 2008 Jul;149(7):3698-707. doi: 10.1210/en.2007-1556. Epub 2008 Mar 27.

Abstract

Transcription factors regulate tissue-specific differentiation of pluripotent mesenchyme to osteoblast (OB), myoblast (MB), and other lineages. Osterix (Osx) is an essential transcription factor for bone development because knockout results in lack of a mineralized skeleton. The proximal Osx promoter contains numerous binding sequences for MyoD and 14 repeats of a binding sequence for Myf5. These basic helix-loop-helix (bHLH) transcription factors have a critical role in MB differentiation and muscle development. We tested the hypothesis that bHLH transcription factors also support OB differentiation through regulation of Osx. Transfection of a MyoD expression vector into two primitive mesenchymal cell lines, C3H/10T1/2 and C2C12, stimulated a 1.2-kb Osx promoter-luciferase reporter 70-fold. Myf5 stimulated the Osx promoter 6-fold. Deletion analysis of the promoter revealed that one of three proximal bHLH sites is essential for MyoD activity. The Myf5 repeat conferred 60% of Myf5 activity with additional upstream sequence required for full activity. MyoD bound the active bHLH sequence and its 3'-flanking region, as shown by EMSA and chromatin immunoprecipitation assays. Real-time PCR revealed that primitive C2C12 and C3H/10T1/2 cells, pre-osteoblastic MC3T3 cells, and undifferentiated primary marrow stromal cells express the muscle transcription factors. C2C12 cells, which differentiate to MB spontaneously and form myotubules, were treated with bone morphogenetic protein 2 (BMP-2) to induce OB differentiation. BMP-2 stimulated expression of Osx and the differentiation marker alkaline phosphatase and blocked myotubule development. BMP-2 suppressed the muscle transcription factor myogenin, but expression of MyoD and Myf5 persisted. Silencing of MyoD inhibited BMP-2 stimulation of Osx and blocked the later appearance of bone alkaline phosphatase. MyoD support of Osx transcription contributes to early OB differentiation.

摘要

转录因子调控多能间充质细胞向成骨细胞(OB)、成肌细胞(MB)及其他谱系的组织特异性分化。osterix(Osx)是骨骼发育所必需的转录因子,因为基因敲除会导致无矿化骨骼。Osx近端启动子包含多个MyoD结合序列以及14个Myf5结合序列重复。这些碱性螺旋-环-螺旋(bHLH)转录因子在MB分化和肌肉发育中起关键作用。我们检验了bHLH转录因子也通过调控Osx来支持OB分化这一假说。将MyoD表达载体转染至两种原始间充质细胞系C3H/10T1/2和C2C12中,可刺激1.2 kb的Osx启动子-荧光素酶报告基因表达增强70倍。Myf5可刺激Osx启动子6倍。对启动子进行缺失分析表明,三个近端bHLH位点之一对MyoD活性至关重要。Myf5重复序列赋予了Myf5 60%的活性,且完全活性还需要额外的上游序列。如电泳迁移率变动分析(EMSA)和染色质免疫沉淀分析所示,MyoD结合活性bHLH序列及其3'侧翼区域。实时PCR显示,原始C2C12和C3H/10T1/2细胞、前成骨细胞MC3T3细胞以及未分化的原代骨髓基质细胞表达肌肉转录因子。可自发分化为MB并形成肌管的C2C12细胞用骨形态发生蛋白2(BMP-2)处理以诱导OB分化。BMP-2刺激Osx表达及分化标志物碱性磷酸酶表达,并阻断肌管发育。BMP-2抑制肌肉转录因子肌细胞生成素,但MyoD和Myf5的表达持续存在。MyoD对Osx转录的支持作用有助于早期OB分化。

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