Gwangju Center, Korea Basic Science Institute (KBSI), Gwangju 61751, Republic of Korea.
Animal Facility of Aging Science, Korea Basic Science Institute, Gwangju 61751, Republic of Korea.
Pharmacol Res. 2022 Oct;184:106423. doi: 10.1016/j.phrs.2022.106423. Epub 2022 Sep 5.
BMP2 is clinically used as an ectopic bone inducer and plays a significant role in bone development, formation, and diseases. Chitinase 3-like 1 protein (Chi3L1) is found in the skeletal system. However, Chi3L1-mediated bone metabolism and aging-related bone erosion via BMP2 signaling have not yet been demonstrated. Herein, Chi3L1 increased BMP2-induced osteoblast differentiation in mesenchymal precursor cells and human primary osteoblasts. Chi3L1 showed abnormal bone development, and primary osteoblasts isolated from Chi3L1 exhibited impaired osteoblast differentiation and maturation. Chi3L1 also potentiated BMP2 signaling and RUNX2 expression in primary osteoblasts. Chi3L1 interacted with BMPRIa, which increased the surface expression of BMPRIa and promoted BMP2 signaling to induce osteoblast differentiation. Chi3L1 mice showed bone formation reduced with a decrease in RUNX2 expression in calvarial defects. Chi3L1 mice exhibited aging-related osteoporotic bone loss with decreases in the levels of RUNX2 and OPG, while serum PYD level and osteoclast number increased. Chi3L1 increased OPG via non-canonical BMP2 signaling in osteoblasts, which suppressed osteoclastogenesis in BMMs. Furthermore, ROC analysis showed that serum Chi3L1 level clinically decreased in osteoporosis patients. Our findings demonstrate that Chi3L1 promotes bone formation, suppresses osteoclastogenesis, and prevents aging-related osteoporosis.
BMP2 临床上被用作异位骨诱导剂,在骨骼发育、形成和疾病中发挥重要作用。几丁质酶 3 样蛋白 1(Chi3L1)存在于骨骼系统中。然而,Chi3L1 通过 BMP2 信号介导的骨代谢和与衰老相关的骨质侵蚀尚未得到证实。在此,Chi3L1 增加了间充质前体细胞和人原代成骨细胞中 BMP2 诱导的成骨细胞分化。Chi3L1 表现出异常的骨骼发育,并且从 Chi3L1 分离的原代成骨细胞表现出成骨细胞分化和成熟受损。Chi3L1 还增强了原代成骨细胞中的 BMP2 信号和 RUNX2 表达。Chi3L1 与 BMPRIa 相互作用,增加了 BMPRIa 的表面表达,并促进了 BMP2 信号诱导成骨细胞分化。Chi3L1 小鼠在颅骨缺陷中表现出骨形成减少,RUNX2 表达降低。Chi3L1 小鼠表现出与衰老相关的骨质疏松性骨质流失,RUNX2 和 OPG 水平降低,而血清 PYD 水平和破骨细胞数量增加。Chi3L1 通过成骨细胞中的非经典 BMP2 信号增加 OPG,从而抑制 BMMs 中的破骨细胞生成。此外,ROC 分析表明,骨质疏松症患者的血清 Chi3L1 水平临床下降。我们的研究结果表明,Chi3L1 促进骨形成、抑制破骨细胞生成,并预防与衰老相关的骨质疏松症。