Department of Immunology, Graduate School of Medicine and Faculty of Medicine, The University of Tokyo, Tokyo, Japan.
Department of Osteoimmunology, Graduate School of Medicine and Faculty of Medicine, The University of Tokyo, Tokyo, Japan.
Nat Metab. 2020 Dec;2(12):1382-1390. doi: 10.1038/s42255-020-00318-y. Epub 2020 Dec 7.
Osteoclasts are the exclusive bone-resorbing cells, playing a central role in bone metabolism, as well as the bone damage that occurs under pathological conditions. In postnatal life, haematopoietic stem-cell-derived precursors give rise to osteoclasts in response to stimulation with macrophage colony-stimulating factor and receptor activator of nuclear factor-κB ligand, both of which are produced by osteoclastogenesis-supporting cells such as osteoblasts and osteocytes. However, the precise mechanisms underlying cell fate specification during osteoclast differentiation remain unclear. Here, we report the transcriptional profiling of 7,228 murine cells undergoing in vitro osteoclastogenesis, describing the stepwise events that take place during the osteoclast fate decision process. Based on our single-cell transcriptomic dataset, we find that osteoclast precursor cells transiently express CD11c, and deletion of receptor activator of nuclear factor-κB specifically in CD11c-expressing cells inhibited osteoclast formation in vivo and in vitro. Furthermore, we identify Cbp/p300-interacting transactivator with Glu/Asp-rich carboxy-terminal domain 2 (Cited2) as the molecular switch triggering terminal differentiation of osteoclasts, and deletion of Cited2 in osteoclast precursors in vivo resulted in a failure to commit to osteoclast fate. Together, the results of this study provide a detailed molecular road map of the osteoclast differentiation process, refining and expanding our understanding of the molecular mechanisms underlying osteoclastogenesis.
破骨细胞是唯一的骨吸收细胞,在骨代谢以及病理条件下发生的骨损伤中发挥核心作用。在出生后生命中,造血干细胞衍生的前体细胞在受到巨噬细胞集落刺激因子和核因子-κB 配体受体激活剂的刺激下,产生破骨细胞,这两种物质均由成骨细胞和骨细胞等破骨细胞生成支持细胞产生。然而,破骨细胞分化过程中细胞命运特化的确切机制仍不清楚。在这里,我们报告了 7228 个体外破骨细胞发生过程中的鼠类细胞的转录谱,描述了破骨细胞命运决定过程中发生的逐步事件。基于我们的单细胞转录组数据集,我们发现破骨细胞前体细胞短暂表达 CD11c,并且特异性地在表达 CD11c 的细胞中缺失核因子-κB 受体激活剂,抑制了体内和体外的破骨细胞形成。此外,我们确定 Cbp/p300 相互作用的转录激活因子具有谷氨酸/天冬氨酸丰富的羧基末端结构域 2(Cited2)是触发破骨细胞终末分化的分子开关,并且体内破骨细胞前体中的 Cited2 缺失导致未能向破骨细胞命运分化。总之,这项研究的结果提供了破骨细胞分化过程的详细分子路线图,细化和扩展了我们对破骨细胞生成的分子机制的理解。