成骨细胞
破骨细胞
生物
细胞生物学
调节器
转录因子
骨重建
细胞分化
运行x2
内分泌学
遗传学
基因
受体
体外
作者
Xueying Wang,Hui-Yi Kua,Yuanyu Hu,Ke Guo,Qi Zeng,Qiang Wu,Huck‐Hui Ng,Gérard Karsenty,Benoît De Crombrugghe,James K. Yeh,Baojie Li
标识
DOI:10.1083/jcb.200507106
摘要
p53 is a well known tumor suppressor. We show that p53 also regulates osteoblast differentiation, bone formation, and osteoblast-dependent osteoclast differentiation. Indeed, p53−/− mice display a high bone mass phenotype, and p53−/− osteoblasts show accelerated differentiation, secondary to an increase in expression of the osteoblast differentiation factor osterix, as a result. Reporter assays indicate that p53 represses osterix transcription by the minimal promoter in a DNA-binding–independent manner. In addition, p53−/− osteoblasts have an enhanced ability to favor osteoclast differentiation, in association with an increase in expression of macrophage-colony stimulating factor, which is under the control of osterix. Furthermore, inactivating p53 is sufficient to rescue the osteoblast differentiation defects observed in mice lacking c-Abl, a p53-interacting protein. Thus, these results identify p53 as a novel regulator of osteoblast differentiation, osteoblast-dependent osteoclastogenesis, and bone remodeling.
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