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人源化FcγRIIa:转基因小鼠破骨细胞生成及骨平衡中的双刃剑

hFcγRIIa: a double-edged sword in osteoclastogenesis and bone balance in transgenic mice.

作者信息

Miao Jie, Wang Hong-Min, Pan Xiao-Hua, Gong Zheng, Gao Xiao-Ming, Gong Fang-Yuan

机构信息

School of Biology and Basic Medical Sciences, Suzhou Medical College, Soochow University, Suzhou, China.

出版信息

Front Immunol. 2024 Aug 30;15:1425670. doi: 10.3389/fimmu.2024.1425670. eCollection 2024.

Abstract

Rheumatoid arthritis (RA) is a chronic autoimmune disease accompanied by local and systemic bone loss. FcγRs, especially FcγRIIa (hFcγRIIa), have been implicated in the pathogenesis of RA. However, the contribution of hFcγRIIa to bone loss has not been fully elucidated. In the present study, we demonstrated the double-edged sword role of hFcγRIIa on osteoclast differentiation through investigations involving hFcγRIIa-transgenic (hFcγRIIa-Tg) mice. Our findings reveal that hFcγRIIa-Tg mice, previously shown to exhibit heightened susceptibility to collagen-induced arthritis (CIA), displayed increased osteoporosis during CIA or at advanced ages (40 weeks), accompanied by heightened osteoclast differentiation. Notably, bone marrow cells from hFcγRIIa-Tg mice exhibited enhanced efficiency in differentiating into osteoclasts and bone resorption compared to wild-type mice when stimulated with receptor activators of NF-κB ligand (RANKL). Additionally, hFcγRIIa-Tg mice exhibited augmented sensitivity to RANKL-induced bone loss , highlighting the osteoclast-promoting role of hFcγRIIa. Mechanistically, bone marrow cells from hFcγRIIa-Tg mice displayed heightened Syk self-activation, leading to mTOR-pS6 pathway activation, thereby promoting RANKL-driven osteoclast differentiation. Intriguingly, while hFcγRIIa crosslinking hindered RANKL-induced osteoclast differentiation, it activated the kinase cAbl, subsequently triggering STAT5 activation and inhibiting the expression of osteoclast-associated genes. This study provides novel insights into hFcγRIIa-mediated osteoclast biology, suggesting promising therapeutic targets for managing bone remodeling disorders.

摘要

类风湿性关节炎(RA)是一种伴有局部和全身性骨质流失的慢性自身免疫性疾病。FcγRs,尤其是FcγRIIa(人FcγRIIa),与RA的发病机制有关。然而,人FcγRIIa对骨质流失的作用尚未完全阐明。在本研究中,我们通过涉及人FcγRIIa转基因(hFcγRIIa-Tg)小鼠的研究,证明了人FcγRIIa在破骨细胞分化中的双刃剑作用。我们的研究结果表明,先前显示对胶原诱导的关节炎(CIA)易感性增加的hFcγRIIa-Tg小鼠,在CIA期间或老年(40周)时表现出骨质疏松增加,同时破骨细胞分化增强。值得注意的是,与野生型小鼠相比,hFcγRIIa-Tg小鼠的骨髓细胞在用核因子κB受体活化因子配体(RANKL)刺激时,分化为破骨细胞和骨吸收的效率更高。此外,hFcγRIIa-Tg小鼠对RANKL诱导的骨质流失表现出更高的敏感性,突出了人FcγRIIa促进破骨细胞的作用。机制上,hFcγRIIa-Tg小鼠的骨髓细胞表现出Syk自激活增强,导致mTOR-pS6途径激活,从而促进RANKL驱动的破骨细胞分化。有趣的是,虽然人FcγRIIa交联阻碍了RANKL诱导的破骨细胞分化,但它激活了激酶cAbl,随后触发STAT5激活并抑制破骨细胞相关基因的表达。这项研究为hFcγRIIa介导的破骨细胞生物学提供了新的见解,为治疗骨重塑障碍提供了有前景的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8d8/11392756/ca4244ad872c/fimmu-15-1425670-g001.jpg

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