Department of Immunology, Genetics and Pathology, Rudbeck Laboratory, Uppsala University, Dag Hammarskjölds Väg 20, SE-751 85, Uppsala, Sweden; Department of Molecular Pathophysiology, Institute of Advanced Medical Sciences, Nippon Medical School, Sendagi Bunkyo-ku, Tokyo, 113 8602, Japan.
Department of Molecular, Cell, and Cancer Biology, University of Massachusetts Medical School, Worcester, MA, 01650, United States.
Dev Biol. 2021 Nov;479:11-22. doi: 10.1016/j.ydbio.2021.06.010. Epub 2021 Jul 24.
Platelet derived growth factor beta and its receptor, Pdgfrb, play essential roles in the development of vascular mural cells, including pericytes and vascular smooth muscle cells. To determine if this role was conserved in zebrafish, we analyzed pdgfb and pdgfrb mutant lines. Similar to mouse, pdgfb and pdgfrb mutant zebrafish lack brain pericytes and exhibit anatomically selective loss of vascular smooth muscle coverage. Despite these defects, pdgfrb mutant zebrafish did not otherwise exhibit circulatory defects at larval stages. However, beginning at juvenile stages, we observed severe cranial hemorrhage and vessel dilation associated with loss of pericytes and vascular smooth muscle cells in pdgfrb mutants. Similar to mouse, pdgfrb mutant zebrafish also displayed structural defects in the glomerulus, but normal development of hepatic stellate cells. We also noted defective mural cell investment on coronary vessels with concomitant defects in their development. Together, our studies support a conserved requirement for Pdgfrb signaling in mural cells. In addition, these zebrafish mutants provide an important model for definitive investigation of mural cells during early embryonic stages without confounding secondary effects from circulatory defects.
血小板衍生生长因子β及其受体 Pdgfrb 在血管壁细胞(包括周细胞和血管平滑肌细胞)的发育中发挥重要作用。为了确定这一作用在斑马鱼中是否保守,我们分析了 pdgfb 和 pdgfrb 突变体系。与小鼠相似,pdgfb 和 pdgfrb 突变体斑马鱼缺乏脑周细胞,并表现出血管平滑肌覆盖的解剖选择性缺失。尽管存在这些缺陷,但 pdgfrb 突变体斑马鱼在幼虫阶段并没有表现出其他循环缺陷。然而,从幼年阶段开始,我们观察到严重的颅脑出血和血管扩张,这与周细胞和血管平滑肌细胞的缺失有关。与小鼠相似,pdgfrb 突变体斑马鱼的肾小球也表现出结构缺陷,但肝星状细胞正常发育。我们还注意到冠状动脉血管的壁细胞投资缺陷,同时其发育也存在缺陷。综上所述,我们的研究支持 Pdgfrb 信号在壁细胞中具有保守的作用。此外,这些斑马鱼突变体为明确研究早期胚胎阶段的壁细胞提供了一个重要的模型,而不会受到循环缺陷的二次影响。