骨细胞
机械转化
压电1
机械敏感通道
细胞生物学
枝晶(数学)
化学
树突棘
骨形成
信号转导
解剖
骨重建
机械反应
基因敲除
伪足
成骨细胞
细胞信号
神经科学
骨细胞
作者
Yizhong Hu,Xinchen Wu,Fuhua Wang,Jin Yu,Yangchen Jin,Yuchen Liu,Cong Qian,Yingzi Yang
标识
DOI:10.1038/s41467-025-65636-9
摘要
Mechanical force controls bone development and homeostasis, with mechanosensitive osteocytes playing a key role. Osteocytes form interconnected dendrites to respond to mechanical stimuli and regulate bone formation and resorption. However, the molecular mechanisms underlying osteocyte maturation and dendrite formation remain elusive. Here we show that Piezo1 loss in late osteoblasts and osteocytes reduces bone mass and disrupts osteocyte differentiation with reduced dendrite number, length and network formation. Decreased YAP activity and unexpected Wnt/β-catenin signaling activation cause these deficiencies, largely restored by intermittent YAP activation. We further identify YAP targets CCN1/2 as crucial secreted factors in the Piezo1-YAP mechanotransduction. CCN1/2 overexpression in the liver rescues dendritic and bone defects in the Piezo1 mutant mice by activating Src, promoting actin polymerization, and activating YAP in a positive feedforward loop. Our findings highlight the pivotal roles of Piezo1 and YAP-CCN1/2-Src signaling, offering potential therapeutic targets for improving osteocyte dendritic networks.
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