Zhao Dezhi, Liu Ruofei, Li Guobin, Chen Meng, Shang Peng, Yang Hui, Jiang Jean X, Xu Huiyun
Key Laboratory for Space Bioscience and Biotechnology, School of Life Sciences, Northwestern Polytechnical University, Xi'an, China.
Key Laboratory for Space Bioscience and Biotechnology, Research and Development Institute in Shenzhen, Northwestern Polytechnical University, Shenzhen, China.
Front Physiol. 2020 Mar 31;11:299. doi: 10.3389/fphys.2020.00299. eCollection 2020.
Connexin (Cx) 43 forms gap junctions and hemichannels that mediate communication between osteocytes and adjacent cells or the extracellular environment in bone, respectively. To investigate the role of each channel type in response to mechanical unloading, two transgenic mouse models overexpressing dominant-negative Cx43 predominantly in osteocytes driven by a 10 kb dentin matrix protein 1 () promoter were generated. The R76W mutation resulted in gap junction inhibition and enhancement of hemichannels, whereas the Δ130-136 mutation inhibited both gap junctions and hemichannels. Both mutations led to cortical bone loss with increased endocortical osteoclast activity during unloading. Increased periosteal osteoclasts with decreased apoptotic osteocytes were observed only in R76W mice. These findings indicated that inhibiting osteocytic Cx43 channels promotes bone loss induced by unloading, mainly in the cortical area; moreover, hemichannels protect osteocytes against apoptosis and promote periosteal bone remodeling, whereas gap junctions modulate endocortical osteoclast activity in response to unloading.
连接蛋白(Cx)43形成缝隙连接和半通道,分别介导骨细胞与相邻细胞之间的通讯或骨中的细胞外环境。为了研究每种通道类型在机械卸载反应中的作用,构建了两种转基因小鼠模型,它们在由10 kb牙本质基质蛋白1()启动子驱动的情况下,主要在骨细胞中过表达显性负性Cx43。R76W突变导致缝隙连接抑制和半通道增强,而Δ130 - 136突变则抑制了缝隙连接和半通道。两种突变在卸载过程中均导致皮质骨丢失,同时内皮质破骨细胞活性增加。仅在R76W小鼠中观察到骨膜破骨细胞增加,而凋亡骨细胞减少。这些发现表明,抑制骨细胞Cx43通道会促进卸载诱导的骨丢失,主要发生在皮质区域;此外,半通道可保护骨细胞免于凋亡并促进骨膜骨重塑,而缝隙连接则在响应卸载时调节内皮质破骨细胞活性。