Li Hanjun, Liu Pei, Xu Shuqin, Li Yinghua, Dekker Joseph D, Li Baojie, Fan Ying, Zhang Zhenlin, Hong Yang, Yang Gong, Tang Tingting, Ren Yongxin, Tucker Haley O, Yao Zhengju, Guo Xizhi
J Clin Invest. 2017 Apr 3;127(4):1241-1253. doi: 10.1172/JCI89511. Epub 2017 Feb 27.
A hallmark of aged mesenchymal stem/progenitor cells (MSCs) in bone marrow is the pivot of differentiation potency from osteoblast to adipocyte coupled with a decrease in self-renewal capacity. However, how these cellular events are orchestrated in the aging progress is not fully understood. In this study, we have used molecular and genetic approaches to investigate the role of forkhead box P1 (FOXP1) in transcriptional control of MSC senescence. In bone marrow MSCs, FOXP1 expression levels declined with age in an inverse manner with those of the senescence marker p16INK4A. Conditional depletion of Foxp1 in bone marrow MSCs led to premature aging characteristics, including increased bone marrow adiposity, decreased bone mass, and impaired MSC self-renewal capacity in mice. At the molecular level, FOXP1 regulated cell-fate choice of MSCs through interactions with the CEBPβ/δ complex and recombination signal binding protein for immunoglobulin κ J region (RBPjκ), key modulators of adipogenesis and osteogenesis, respectively. Loss of p16INK4A in Foxp1-deficient MSCs partially rescued the defects in replication capacity and bone mass accrual. Promoter occupancy analyses revealed that FOXP1 directly represses transcription of p16INK4A. These results indicate that FOXP1 attenuates MSC senescence by orchestrating their cell-fate switch while maintaining their replicative capacity in a dose- and age-dependent manner.
骨髓中衰老的间充质干/祖细胞(MSC)的一个标志是分化潜能从成骨细胞向脂肪细胞的转变,同时自我更新能力下降。然而,在衰老过程中这些细胞事件是如何协调的尚未完全清楚。在本研究中,我们使用分子和遗传学方法来研究叉头框P1(FOXP1)在MSC衰老转录调控中的作用。在骨髓间充质干细胞中,FOXP1表达水平随年龄增长而下降,与衰老标志物p16INK4A的表达呈相反趋势。骨髓间充质干细胞中Foxp1的条件性缺失导致过早衰老特征,包括骨髓脂肪增多、骨量减少以及小鼠间充质干细胞自我更新能力受损。在分子水平上,FOXP1通过分别与脂肪生成和成骨的关键调节因子CEBPβ/δ复合物和免疫球蛋白κ J区重组信号结合蛋白(RBPjκ)相互作用来调节间充质干细胞的细胞命运选择。Foxp1缺陷型间充质干细胞中p16INK4A的缺失部分挽救了复制能力和骨量积累方面的缺陷。启动子占据分析表明FOXP1直接抑制p16INK4A的转录。这些结果表明,FOXP1通过协调间充质干细胞的细胞命运转换,同时以剂量和年龄依赖性方式维持其复制能力,从而减轻间充质干细胞衰老。