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Foxp1/2/4作为一种抑制复合物调节软骨内骨化。

Foxp1/2/4 regulate endochondral ossification as a suppresser complex.

作者信息

Zhao Haixia, Zhou Wenrong, Yao Zhengju, Wan Yong, Cao Jingjing, Zhang Lingling, Zhao Jianzhi, Li Hanjun, Zhou Rujiang, Li Baojie, Wei Gang, Zhang Zhenlin, French Catherine A, Dekker Joseph D, Yang Yingzi, Fisher Simon E, Tucker Haley O, Guo Xizhi

机构信息

Bio-X Institutes, Key Laboratory for the Genetics of Developmental and Neuropsychiatric Disorders (Ministry of Education), Shanghai Jiao Tong University, Shanghai 200240, China.

Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences (CAS), Shanghai 200032, China.

出版信息

Dev Biol. 2015 Feb 15;398(2):242-54. doi: 10.1016/j.ydbio.2014.12.007. Epub 2014 Dec 17.

Abstract

Osteoblast induction and differentiation in developing long bones is dynamically controlled by the opposing action of transcriptional activators and repressors. In contrast to the long list of activators that have been discovered over past decades, the network of repressors is not well-defined. Here we identify the expression of Foxp1/2/4 proteins, comprised of Forkhead-box (Fox) transcription factors of the Foxp subfamily, in both perichondrial skeletal progenitors and proliferating chondrocytes during endochondral ossification. Mice carrying loss-of-function and gain-of-function Foxp mutations had gross defects in appendicular skeleton formation. At the cellular level, over-expression of Foxp1/2/4 in chondroctyes abrogated osteoblast formation and chondrocyte hypertrophy. Conversely, single or compound deficiency of Foxp1/2/4 in skeletal progenitors or chondrocytes resulted in premature osteoblast differentiation in the perichondrium, coupled with impaired proliferation, survival, and hypertrophy of chondrocytes in the growth plate. Foxp1/2/4 and Runx2 proteins interacted in vitro and in vivo, and Foxp1/2/4 repressed Runx2 transactivation function in heterologous cells. This study establishes Foxp1/2/4 proteins as coordinators of osteogenesis and chondrocyte hypertrophy in developing long bones and suggests that a novel transcriptional repressor network involving Foxp1/2/4 may regulate Runx2 during endochondral ossification.

摘要

发育中的长骨中,成骨细胞的诱导和分化受到转录激活因子和抑制因子的相反作用的动态调控。与过去几十年发现的众多激活因子相比,抑制因子网络尚未明确界定。在此,我们确定了Foxp1/2/4蛋白的表达,该蛋白由Foxp亚家族的叉头框(Fox)转录因子组成,在内软骨骨化过程中的软骨膜骨骼祖细胞和增殖软骨细胞中均有表达。携带功能丧失和功能获得性Foxp突变的小鼠在附肢骨骼形成方面存在严重缺陷。在细胞水平上,软骨细胞中Foxp1/2/4的过表达消除了成骨细胞的形成和软骨细胞的肥大。相反,骨骼祖细胞或软骨细胞中Foxp1/2/4的单基因或复合缺陷导致软骨膜中成骨细胞过早分化,同时生长板中软骨细胞的增殖、存活和肥大受损。Foxp1/2/4与Runx2蛋白在体外和体内相互作用,并且Foxp1/2/4在异源细胞中抑制Runx2的反式激活功能。本研究将Foxp1/2/4蛋白确立为发育中长骨成骨和软骨细胞肥大的协调因子,并表明一个涉及Foxp1/2/4的新型转录抑制因子网络可能在内软骨骨化过程中调节Runx2。

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