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RANKL-independent osteoclastogenesis in the SH3BP2 cherubism mice

机译:SH3BP2小鼠中不依赖于RANKL的破骨细胞发生

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摘要

Even though the receptor activator of the nuclear factor-κB ligand (RANKL) and its receptor RANK have an exclusive role in osteoclastogenesis, the possibility of RANKL/RANK-independent osteoclastogenesis has been the subject of a long-standing debate in bone biology. In contrast, it has been reported that calvarial injection of TNF-ɑ elicits significant osteoclastogenesis in the absence of RANKL/RANK in NF-κB2- and RBP-J-deficient mice, suggesting that inflammatory challenges and secondary gene manipulation are the prerequisites for RANKL/RANK-deficient mice to develop osteoclasts . Here we report that, even in the absence of RANKL ( ), cherubism mice ( ) harboring the homozygous gain-of-function mutation in SH3-domain binding protein 2 (SH3BP2) develop tartrate-resistant acid phosphatase (TRAP)-positive multinucleated osteoclasts spontaneously. The mice exhibit an increase in tooth exposure and a decrease in bone volume/total volume compared to mice. The multinucleated cells were stained positively for cathepsin K. Osteoclastic marker gene expression in bone and serum TRAP5b levels were elevated in mice. Elevation of the serum TNF-ɑ levels suggested that TNF-ɑ is a driver for the RANKL-independent osteoclast formation in mice. Our results provide a novel mutant model that develops osteoclasts independent of RANKL and establish that the gain-of-function of SH3BP2 promotes osteoclastogenesis not only in the presence of RANKL but also in the absence of RANKL.
机译:尽管核因子-κB配体的受体激活剂(RANKL)及其受体RANK在破骨细胞形成中具有排他性作用,但RANKL / RANK独立的破骨细胞形成的可能性一直是骨骼生物学中长期争论的主题。相比之下,据报道,在缺乏RANKL / RANK的情况下,NF-κB2和RBP-J缺陷小鼠的颅骨注射TNF-α引起了显着的破骨细胞生成,提示炎症挑战和二级基因操纵是RANKL的前提条件/ RANK缺陷的小鼠会产生破骨细胞。在这里,我们报道,即使在没有RANKL()的情况下,在SH3域结合蛋白2(SH3BP2)中具有纯合功能获得性突变的小白鼠()也会产生抗酒石酸的酸性磷酸酶(TRAP)阳性的多核破骨细胞自发地。与小鼠相比,小鼠显示出牙齿暴露的增加和骨骼体积/总体积的减少。多核细胞的组织蛋白酶K染色呈阳性。小鼠骨骼中破骨细胞标志物基因表达和血清TRAP5b水平升高。血清TNF-α水平升高表明TNF-α是小鼠中RANKL非依赖性破骨细胞形成的驱动器。我们的结果提供了一种新型的突变模型,该模型可以独立于RANKL来发展破骨细胞,并确定SH3BP2的功能获得不仅在存在RANKL的情况下而且在不存在RANKL的情况下都可以促进破骨细胞的发生。

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