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首页> 外文期刊>The Journal of biological chemistry >Runx2 Protein Expression Utilizes the Runx2 P1 Promoter to Establish Osteoprogenitor Cell Number for Normal Bone Formation
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Runx2 Protein Expression Utilizes the Runx2 P1 Promoter to Establish Osteoprogenitor Cell Number for Normal Bone Formation

机译:Runx2蛋白表达利用Runx2 P1启动子来建立正常骨形成的骨催化剂细胞数

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摘要

The Runt-related transcription factor, Runx2, is essential for osteogenesis and is controlled by both distal (P1) and proximal (P2) promoters. To understand Runx2 function requires determination of the spatiotemporal activity of P1 and P2 to Runx2 protein production. We generated a mouse model in which the P1-derived transcript was replaced with a lacZ reporter allele, resulting in loss of P1-derived protein while simultaneously allowing discrimination between the activities of the two promoters. Loss of P1-driven expression causes developmental defects with cleidocranial dysplasia-like syndromes that persist in the postnatal skeleton. P1 activity is robust in preosteogenic mesenchyme and at the onset of bone formation but decreases as bone matures. Homozygous Runx2-P1lacZ/lacZ mice have a normal life span but exhibit severe osteopenia and compromised bone repair in adult mice because of osteoblastic defects and not increased osteoclastic resorption. Gene expression profiles of bone, immunohistochemical studies, and ex vivo differentiation using calvarial osteoblasts and marrow stromal cells identified mechanisms for the skeletal phenotype. The findings indicate that P1 promoter activity is necessary for generating a threshold level of Runx2 protein to commit sufficient osteoprogenitor numbers for normal bone formation. P1 promoter function is not compensated via the P2 promoter. However, the P2 transcript with compensatory mechanisms from bone morphogenetic protein (BMP) and Wnt signaling is adequate for mineralization of the bone tissue that does form. We conclude that selective utilization of the P1 and P2 promoters enables the precise spatiotemporal expression of Runx2 necessary for normal skeletogenesis and the maintenance of bone mass in the adult.
机译:Runt相关的转录因子Runx2对于骨开发是必不可少的,并且由远端(P1)和近端(P2)启动子控制。为了理解RUNX2功能,需要测定P1和P2的时空活性至RUNX2蛋白质产生。我们生成了一种小鼠模型,其中用Lacz报道等位基因替换了P1衍生的转录物,导致P1衍生蛋白质的损失,同时允许两个启动子的活性之间的歧视。 P1驱动表达的丧失会导致发育缺陷与粘连性发育不良的综合征存在于产后骨架上。 P1活性在骨形成的骨髓间充质和骨形成开始时具有稳健,但随着骨成熟而降低。纯合Runx2-P1Lacz / Lacz小鼠具有正常的寿命,但由于骨细胞缺陷而表现出严重的骨质脑和成人小鼠中的骨修复,并且不会增加骨细胞缺陷。使用颅骨成骨细胞和骨髓基质细胞的骨,免疫组织化学研究和离体分化的基因表达谱和骨髓基质细胞的骨骼表型机制。结果表明,P1启动子活性对于产生RUNX2蛋白的阈值水平是必需的,以赋予正常骨形成足够的骨催促剂数。 P1启动子功能未通过P2启动子补偿。然而,具有来自骨形态发生蛋白(BMP)和WNT信号传导的补偿机制的P2转录物足以形成所形成的骨组织的矿化。我们得出结论,P1和P2启动子的选择性利用使得正常骨骼发生和成人骨量维持骨质的runx2的精确时空表达能够。

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