Aquatic Molecular Pathobiology Group, Institute of Marine Research (IIM-CSIC), Vigo, Spain.
Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, California, United States of America.
PLoS One. 2017 Oct 17;12(10):e0186444. doi: 10.1371/journal.pone.0186444. eCollection 2017.
Skeletal development and mineralization are essential processes driven by the coordinated action of neural signals, circulating molecules and local factors. Our previous studies revealed that the novel neuropeptide Pth4, synthesized by hypothalamic cells, was involved in bone metabolism via phosphate regulation in adult zebrafish. Here, we investigate the role of pth4 during skeletal development using single-cell resolution, two-photon laser ablation of Pth4:eGFP-expressing cells and confocal imaging in vivo. Using a stable transgenic Pth4:eGFP zebrafish line, we identify Pth4:eGFP-expressing cells as post-mitotic neurons. After targeted ablation of eGFP-expressing cells in the hypothalamus, the experimental larvae exhibited impaired mineralization of the craniofacial bones whereas cartilage development was normal. In addition to a decrease in pth4 transcript levels, we noted altered expression of phex and entpd5, genes associated with phosphate homeostasis and mineralization, as well as a delay in the expression of osteoblast differentiation markers such as sp7 and sparc. Taken together, these results suggest that Pth4-expressing hypothalamic neurons participate in the regulation of bone metabolism, possibly through regulating phosphate balance during zebrafish development.
骨骼发育和矿化是由神经信号、循环分子和局部因素协调作用驱动的基本过程。我们之前的研究表明,新的神经肽 Pth4 由下丘脑细胞合成,通过调节成年斑马鱼中的磷酸盐参与骨代谢。在这里,我们使用单细胞分辨率、双光子激光消融 Pth4:eGFP 表达细胞和体内共聚焦成像来研究 Pth4 在骨骼发育过程中的作用。使用稳定的转基因 Pth4:eGFP 斑马鱼系,我们将 Pth4:eGFP 表达细胞鉴定为有丝分裂后神经元。在靶向消融下丘脑的 eGFP 表达细胞后,实验幼虫表现出颅面骨矿化受损,而软骨发育正常。除了 pth4 转录本水平降低外,我们还注意到与磷酸盐稳态和矿化相关的基因 phex 和 entpd5 的表达发生改变,以及成骨细胞分化标志物如 sp7 和 sparc 的表达延迟。综上所述,这些结果表明,表达 Pth4 的下丘脑神经元参与了骨代谢的调节,可能是通过调节斑马鱼发育过程中的磷酸盐平衡。