Laboratory for Organogenesis and Regeneration (LOR), GIGA Institute, University of Liège, 4000 Liège, Belgium.
GIGA Genomics Platform, B34, GIGA Institute, University of Liège, 4000 Liège, Belgium.
Biomolecules. 2024 Jan 23;14(2):139. doi: 10.3390/biom14020139.
Zebrafish are now widely used to study skeletal development and bone-related diseases. To that end, understanding osteoblast differentiation and function, the expression of essential transcription factors, signaling molecules, and extracellular matrix proteins is crucial. We isolated Sp7-expressing osteoblasts from 4-day-old larvae using a fluorescent reporter. We identified two distinct subpopulations and characterized their specific transcriptome as well as their structural, regulatory, and signaling profile. Based on their differential expression in these subpopulations, we generated mutants for the extracellular matrix protein genes and to study their functions. The mutant larvae display reduced chondrocranium size and decreased bone mineralization, while in adults a reduced vertebral thickness and tissue mineral density, and fusion of the caudal fin vertebrae were observed. In contrast, mutants showed an increased mineralization of cranial elements and a reduced ceratohyal angle in larvae, while in adults a significantly increased vertebral centra thickness, length, volume, surface area, and tissue mineral density was observed. In addition, absence of the opercle specifically on the right side was observed. Transcriptomic analysis reveals up-regulation of genes involved in collagen biosynthesis and down-regulation of Fgf8 signaling in mutants. Taken together, our results highlight the importance of bone extracellular matrix protein genes and in skeletal development and homeostasis.
斑马鱼现在被广泛用于研究骨骼发育和与骨骼相关的疾病。为此,了解成骨细胞分化和功能、关键转录因子、信号分子和细胞外基质蛋白的表达至关重要。我们使用荧光报告基因从 4 天大的幼鱼中分离出 Sp7 表达的成骨细胞。我们鉴定了两个不同的亚群,并对其特定的转录组及其结构、调节和信号特征进行了表征。根据这些亚群中的差异表达,我们生成了细胞外基质蛋白基因 和 的突变体,以研究它们的功能。突变体幼鱼的颅面骨大小减小,骨矿化减少,而成年鱼的脊椎厚度和组织矿物质密度降低,尾鳍脊椎融合。相比之下,突变体的颅面骨矿化增加,幼鱼的角蛋白角减小,而成年鱼的脊椎中心厚度、长度、体积、表面积和组织矿物质密度显著增加。此外,还观察到右侧的鳃盖骨缺失。转录组分析显示,突变体中涉及胶原蛋白生物合成的基因上调,而 Fgf8 信号通路下调。总之,我们的研究结果强调了骨骼细胞外基质蛋白基因 和 在骨骼发育和稳态中的重要性。