Department of Biochemistry and Structural Biology, University of Texas Health Science Center at San Antonio, San Antonio, TX 78229, USA.
School of Osteopathic Medicine, University of the Incarnate Word, San Antonio, TX 78209, USA.
Cell Rep. 2024 Jul 23;43(7):114363. doi: 10.1016/j.celrep.2024.114363. Epub 2024 Jun 26.
The maternal skeleton experiences significant bone loss during lactation, followed by rapid restoration post weaning. Parathyroid-related protein (PTHrP)-induced acidification of the perilacunar matrix by osteocytes is crucial in this process, yet its mechanism remains unclear. Here, we identify Cx43 hemichannels (HCs) as key mediators of osteocyte acidification and perilacunar-canalicular remodeling (PLR). Utilizing transgenic mouse models expressing dominant-negative Cx43 mutants, we show that mice with impaired Cx43 HCs exhibit attenuated lactation-induced responses compared to wild-type and only gap junction-impaired groups, including lacunar enlargement, upregulation of PLR genes, and bone loss with compromised mechanical properties. Furthermore, inhibition of HCs by a Cx43 antibody blunts PTHrP-induced calcium influx and protein kinase A activation, followed by impaired osteocyte acidification. Additionally, impeded HCs suppress bone recovery during the post-lactation period. Our findings highlight the pivotal role of Cx43 HCs in orchestrating dynamic bone changes during lactation and recovery by regulating acidification and remodeling enzyme expression.
哺乳期母体骨骼经历显著的骨质流失,随后在断奶后迅速恢复。成骨细胞诱导的甲状旁腺相关蛋白(PTHrP)使骨陷窝基质酸化在这个过程中至关重要,但具体机制尚不清楚。在这里,我们确定缝隙连接蛋白 43 (Cx43)半通道(HCs)是成骨细胞酸化和骨陷窝-小管重塑(PLR)的关键介质。利用表达显性失活 Cx43 突变体的转基因小鼠模型,我们发现与野生型和仅间隙连接受损组相比,Cx43 HCs 功能受损的小鼠表现出较弱的哺乳期诱导反应,包括骨陷窝增大、PLR 基因上调以及骨丢失和机械性能受损。此外,Cx43 抗体抑制 HCs 会削弱 PTHrP 诱导的钙内流和蛋白激酶 A 激活,随后成骨细胞酸化受损。此外,受损的 HCs 抑制了哺乳期后的骨恢复。我们的研究结果强调了 Cx43 HCs 通过调节酸化和重塑酶表达在哺乳期和恢复期协调动态骨骼变化中的关键作用。