破骨细胞
骨质疏松症
兰克尔
骨髓
骨免疫学
骨重建
免疫系统
癌症研究
信号转导
条件基因敲除
去卵巢大鼠
人口
骨吸收
骨质疏松症
细胞生物学
成骨细胞
调节器
化学
医学
骨细胞
骨病
内分泌学
免疫学
下调和上调
内科学
NF-κB
骨溶解
基因剔除小鼠
生物
作者
Chaowen Bai,Mingchao Zhang,Le Liu,Lide Tao,Chenyang Xu,Hao Chai,X. Shi,Yin Wang,Xiaopei Zhang,Chen Qiong,Dong Liu,Jinyu Bai,Chang She,Xu Zhou,Cong Cao,Huajian Shan
标识
DOI:10.1002/advs.202510836
摘要
Osteoporosis, characterized by progressive bone loss and increased fracture risk, is a growing concern as the population ages. Current treatments, though advanced, remain limited, underscoring the necessity for novel therapeutic targets. Recent studies have shown that the immune system plays a key role in osteoporosis, with osteoclasts driving bone resorption. Gαi proteins, critical mediators of immune signaling, are implicated in osteoclastogenesis, but their precise role remains unclear. It is demonstrated that Gαi1/3 was highly expressed in osteoclast precursors and mature osteoclasts, with elevated levels in the bone marrow of osteoporotic patients and ovariectomized (OVX) mice. Conditional knockout of Gαi1/3 in osteoclast precursors mitigates OVX-induced bone loss, improving bone mass and structure. Gαi1/3-deficient bone marrow monocytes and macrophages exhibit impaired osteoclast formation and reduced bone resorption. In contrast, overexpression of Gαi1/3 enhances osteoclast differentiation and function. In addition, the 173 Asp residue of Gαi3 is identified as crucial for RANK-TRAF6 binding during RANKL signaling. Inhibition of Gαi1/3 mimics the protective effects of denosumab, a treatment for osteoporosis, in mice. The findings position Gαi1/3 as a critical regulator of osteoclastogenesis and suggest it as a promising therapeutic target for osteoporosis.
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