Miyamoto Kana, Araki Kiyomi Y, Naka Kazuhito, Arai Fumio, Takubo Keiyo, Yamazaki Satoshi, Matsuoka Sahoko, Miyamoto Takeshi, Ito Keisuke, Ohmura Masako, Chen Chen, Hosokawa Kentaro, Nakauchi Hiromitsu, Nakayama Keiko, Nakayama Keiichi I, Harada Mine, Motoyama Noboru, Suda Toshio, Hirao Atsushi
Department of Cell Differentiation, The Sakaguchi Laboratory of Developmental Biology, Keio University School of Medicine, Shinjuku-ku, Tokyo 160-8582, Japan; Department of Medicine and Biosystemic Science, Kyushu University Graduate School of Medical Sciences, Fukuoka, Fukuoka 812-8582, Japan.
Department of Geriatric Medicine, National Institute for Longevity Sciences, National Center for Geriatrics and Gerontology, Obu, Aichi 474-8522, Japan.
Cell Stem Cell. 2007 Jun 7;1(1):101-112. doi: 10.1016/j.stem.2007.02.001.
Hematopoietic stem cells (HSCs) are maintained in an undifferentiated quiescent state within a bone marrow niche. Here we show that Foxo3a, a forkhead transcription factor that acts downstream of the PTEN/PI3K/Akt pathway, is critical for HSC self-renewal. We generated gene-targeted Foxo3a(-/-) mice and showed that, although the proliferation and differentiation of Foxo3a(-/-) hematopoietic progenitors were normal, the number of colony-forming cells present in long-term cocultures of Foxo3a(-/-) bone marrow cells and stromal cells was reduced. The ability of Foxo3a(-/-) HSCs to support long-term reconstitution of hematopoiesis in a competitive transplantation assay was also impaired. Foxo3a(-/-) HSCs also showed increased phosphorylation of p38MAPK, an elevation of ROS, defective maintenance of quiescence, and heightened sensitivity to cell-cycle-specific myelotoxic injury. Finally, HSC frequencies were significantly decreased in aged Foxo3a(-/-) mice compared to the littermate controls. Our results demonstrate that Foxo3a plays a pivotal role in maintaining the HSC pool.
造血干细胞(HSCs)在骨髓微环境中维持未分化的静止状态。我们在此表明,Foxo3a,一种在PTEN/PI3K/Akt信号通路下游起作用的叉头转录因子,对造血干细胞自我更新至关重要。我们构建了基因靶向的Foxo3a(-/-)小鼠,并表明,尽管Foxo3a(-/-)造血祖细胞的增殖和分化正常,但Foxo3a(-/-)骨髓细胞与基质细胞长期共培养中集落形成细胞的数量减少。在竞争性移植试验中,Foxo3a(-/-)造血干细胞支持长期造血重建的能力也受损。Foxo3a(-/-)造血干细胞还表现出p38MAPK磷酸化增加、活性氧升高、静止状态维持缺陷以及对细胞周期特异性骨髓毒性损伤的敏感性增强。最后,与同窝对照相比,老年Foxo3a(-/-)小鼠的造血干细胞频率显著降低。我们的结果表明,Foxo3a在维持造血干细胞库中起关键作用。