Neitzel Leif R, Silver Maya, Wasserman Aaron H, Rea Samantha, Hong Charles C, Williams Charles H
Department of Medicine, Michigan State University College of Human Medicine, East Lansing, Michigan, USA.
Henry Ford Health + Michigan State Health Sciences, Detroit, Michigan, USA.
Dev Dyn. 2025 Jan 22. doi: 10.1002/dvdy.770.
Disruption of extracellular pH and proton-sensing can profoundly impact cellular and protein functions, leading to developmental defects. To visualize changes in extracellular pH in the developing embryo, we generated a zebrafish transgenic line that ubiquitously expresses the ratiometric pH-sensitive fluorescent protein pHluorin2, tethered to the extracellular face of the plasma membrane using a glycosylphosphatidylinositol (GPI) anchor. Monitoring of pHluorin2 with ratiometric fluorescence revealed dynamic and discrete domains of extracellular acidification over the first 72 h of embryonic development. These included acidification of the notochord intercalations, transient acidification of the otic placode, and persistent acidification of the extracellular space of the myotome at distinctly different pH from that within the T-tubules. Knockdown of centronuclear myopathy genes Bin1b (OMIM: 255200) and MTM1 (OMIM: 310400), which disrupt T-tubule formation, also disrupted myotome acidification. In this study we visualize extracellular acidic microdomains in the tissues of whole live animals. This real-time reporter line for directly measuring changes in extracellular pH can be used to illuminate the role of extracellular pH in normal physiological development and disease states.
细胞外pH值的破坏和质子感知会深刻影响细胞和蛋白质功能,导致发育缺陷。为了观察发育中胚胎细胞外pH值的变化,我们构建了一个斑马鱼转基因品系,该品系普遍表达一种比率型pH敏感荧光蛋白pHluorin2,它通过糖基磷脂酰肌醇(GPI)锚定在质膜的细胞外表面。用比率荧光监测pHluorin2揭示了胚胎发育最初72小时内细胞外酸化的动态和离散区域。这些区域包括脊索插入处的酸化,耳基板的短暂酸化,以及肌节细胞外空间的持续酸化,其pH值与T小管内的pH值明显不同。破坏T小管形成的中心核肌病基因Bin1b(OMIM: 255200)和MTM1(OMIM: 310400)的敲低也会破坏肌节酸化。在这项研究中,我们观察了整个活体动物组织中的细胞外酸性微区。这个用于直接测量细胞外pH值变化的实时报告品系可用于阐明细胞外pH值在正常生理发育和疾病状态中的作用。