Department of Life Science, Ewha Womans University, Seoul, 03760, South Korea.
The Research Center for Cellular Homeostasis, Ewha Womans University, Seoul, 03760, South Korea.
Bone Res. 2024 May 15;12(1):29. doi: 10.1038/s41413-024-00326-8.
Mature osteoclasts degrade bone matrix by exocytosis of active proteases from secretory lysosomes through a ruffled border. However, the molecular mechanisms underlying lysosomal trafficking and secretion in osteoclasts remain largely unknown. Here, we show with GeneChip analysis that RUN and FYVE domain-containing protein 4 (RUFY4) is strongly upregulated during osteoclastogenesis. Mice lacking Rufy4 exhibited a high trabecular bone mass phenotype with abnormalities in osteoclast function in vivo. Furthermore, deleting Rufy4 did not affect osteoclast differentiation, but inhibited bone-resorbing activity due to disruption in the acidic maturation of secondary lysosomes, their trafficking to the membrane, and their secretion of cathepsin K into the extracellular space. Mechanistically, RUFY4 promotes late endosome-lysosome fusion by acting as an adaptor protein between Rab7 on late endosomes and LAMP2 on primary lysosomes. Consequently, Rufy4-deficient mice were highly protected from lipopolysaccharide- and ovariectomy-induced bone loss. Thus, RUFY4 plays as a new regulator in osteoclast activity by mediating endo-lysosomal trafficking and have a potential to be specific target for therapies against bone-loss diseases such as osteoporosis.
成熟的破骨细胞通过皱襞边缘从分泌溶酶体中胞吐活性蛋白酶来降解骨基质。然而,破骨细胞中溶酶体运输和分泌的分子机制在很大程度上仍然未知。在这里,我们通过基因芯片分析表明,RUN 和 FYVE 结构域蛋白 4(RUFY4)在破骨细胞发生过程中强烈上调。体内缺乏 Rufy4 的小鼠表现出高骨小梁骨量表型,破骨细胞功能异常。此外,删除 Rufy4 不会影响破骨细胞分化,但由于次级溶酶体酸性成熟、它们向膜的运输以及组织蛋白酶 K 分泌到细胞外空间的破坏,抑制了骨吸收活性。从机制上讲,RUFY4 通过作为晚期内体上 Rab7 和初级溶酶体上 LAMP2 之间的衔接蛋白,促进晚期内体-溶酶体融合。因此,Rufy4 缺陷小鼠对脂多糖和卵巢切除术引起的骨丢失具有高度保护作用。因此,RUFY4 通过介导内溶酶体运输成为破骨细胞活性的新调节剂,有可能成为骨质疏松症等骨丢失疾病的特定治疗靶点。