破骨细胞
细胞生物学
骨髓
化学
免疫系统
调节器
骨重建
骨吸收
受体
信号转导
癌症研究
膜联蛋白A1
造血
髓样
体外
成骨细胞
配体(生物化学)
细胞
体内
前体细胞
内分泌学
内科学
骨细胞
免疫学
膜联蛋白
膜联蛋白A5
细胞生长
内生
细胞分化
骨质疏松症
下调和上调
细胞信号
细胞表面受体
骨免疫学
作者
Gulnaz Guliyeva,Flora Nguemedjio Foko Takile,Verena Stallfort,Anja Derer,Benjamin Frey,Pooja Gupta,Manuel Alexander Weber,Leah Trumet,Georg Schett,Aline Bözec,Bettina Grötsch
摘要
The molecular mechanisms linking immune cell signaling to osteoclastogenesis remain incompletely defined. Here, we identify an Annexin A1 (AnxA1)-Dectin-1 axis as a key driver of osteoclast differentiation. Dectin-1 (CLEC7A), a myeloid C-type lectin receptor best known for β-glucan recognition, is shown to bind the endogenous ligand AnxA1 on pre-osteoclasts, thereby promoting their maturation. In Dectin-1 deficient mice, reduced osteoclast numbers resulted in increased bone volume, whereas β-glucan-induced Dectin-1 activation enhanced osteoclastogenesis. Within the bone marrow niche, AnxA1 was abundantly expressed on B220+ B cells, and γ-irradiation markedly increased its surface translocation both in vitro and in vivo. γ-irradiated B220+ B cells exhibited strong Dectin-1 binding capacity and robustly stimulated osteoclast differentiation in a Dectin-1-dependent manner. These findings establish the AnxA1-Dectin-1 interaction as a critical immune-skeletal communication pathway, revealing a mechanism by which radiation exposed immune cells can accelerate bone resorption. Targeting this axis offers a potential strategy to mitigate radiation-induced bone degradation and preserve skeletal homeostasis.
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