Chiba Mitsuki, Hoshikawa Seira, Shimizu Kouhei, Fujita Hiromi, Wada Keiji, Yamada Aya, Saito Kan, Inuzuka Hiroyuki, Fukumoto Satoshi
Section of Pediatric Dentistry, Division of Oral Health, Growth and Development, Faculty of Dental Science, Kyushu University, Fukuoka, Japan.
Division of Pediatric Dentistry, Department of Community Social Dentistry, Tohoku University Graduate School of Dentistry, Sendai, Japan.
J Cell Physiol. 2025 Apr;240(4):e70032. doi: 10.1002/jcp.70032.
Enhanced osteoclastogenesis causes bone fragility, osteoporosis, and an increased risk of fractures. Recent studies have suggested a possible correlation between osteoporosis and the pathological features of Parkinson's disease (PD). To establish a molecular link between these conditions, we focused on the physiological function of the PD-related protein ubiquitin carboxy-terminal hydrolase L1 (UCHL1) in bone remodeling. To this end, we investigated the role of UCHL1 in regulating osteoclast differentiation in Uchl1 spontaneous mutant gad mice. We found that gad-mouse-derived osteoclast progenitors exhibit enhanced osteoclast differentiation. Likewise, CRISPR-mediated Uchl1 knockout in mouse macrophage-derived preosteoclast RAW-D cells increased RANKL-dependent osteoclastogenesis. Supporting this observation, these Uchl1-depleted cells showed elevated expression of osteoclast marker genes. To uncover the molecular mechanisms by which the loss of Uchl1 enhances osteoclast differentiation, we screened for UCHL1-interacting proteins in RAW-D preosteoclast cells and identified AKT1 as a potential UCHL1-regulated protein. UCHL1 depletion in preosteoclasts led to increased Thr308/Ser473 phosphorylation of AKT1. Furthermore, ectopic expression of UCHL1 decreased the K63-linked polyubiquitination of AKT1. These findings suggest that UCHL1 is critical in partially suppressing osteoclastogenesis through modulating AKT signaling.
破骨细胞生成增强会导致骨脆性增加、骨质疏松以及骨折风险升高。最近的研究表明,骨质疏松症与帕金森病(PD)的病理特征之间可能存在关联。为了在这些病症之间建立分子联系,我们聚焦于帕金森病相关蛋白泛素羧基末端水解酶L1(UCHL1)在骨重塑中的生理功能。为此,我们研究了UCHL1在Uchl1自发突变gad小鼠破骨细胞分化调控中的作用。我们发现,源自gad小鼠的破骨细胞祖细胞表现出增强的破骨细胞分化。同样,在小鼠巨噬细胞衍生的前破骨细胞RAW-D细胞中,CRISPR介导的Uchl1基因敲除增加了RANKL依赖性破骨细胞生成。支持这一观察结果的是,这些UCHL1缺失的细胞显示破骨细胞标记基因的表达升高。为了揭示UCHL1缺失增强破骨细胞分化的分子机制,我们在RAW-D前破骨细胞中筛选了与UCHL1相互作用的蛋白,并确定AKT1是一种潜在的受UCHL1调控的蛋白。前破骨细胞中UCHL1的缺失导致AKT1的Thr308/Ser473磷酸化增加。此外,UCHL1的异位表达降低了AKT1的K63连接的多聚泛素化。这些发现表明,UCHL1通过调节AKT信号传导在部分抑制破骨细胞生成中起关键作用。