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Expression of glycosaminoglycan epitopes during zebrafish skeletogenesis

机译:斑马鱼骨骼生成过程中糖胺聚糖表位的表达

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Background: The zebrafish is an important developmental model. Surprisingly, there are few studies that describe the glycosaminoglycan composition of its extracellular matrix during skeletogenesis. Glycosaminoglycans on proteoglycans contribute to the material properties of musculo skeletal connective tissues, and are important in regulating signalling events during morphogenesis. Sulfation motifs within the chain structure of glycosaminoglycans on cell-associated and extracellular matrix proteoglycans allow them to bind and regulate the sequestration/presentation of bioactive signalling molecules important in musculo-skeletal development. Results: We describe the spatio-temporal expression of different glycosaminoglycan moieties during zebrafish skeletogenesis with antibodies recognising (1) native sulfation motifs within chondroitin and keratan sulfate chains, and (2) enzyme-generated neoepitope sequences within the chain structure of chondroitin sulfate (i.e., 0-, 4-, and 6-sulfated isoforms) and heparan sulfate glycosaminoglycans. We show that all the glycosaminoglycan moieties investigated are expressed within the developing skeletal tissues of larval zebrafish. However, subtle changes in their patterns of spatio-temporal expression over the period examined suggest that their expression is tightly and dynamically controlled during development. Conclusions: The subtle differences observed in the domains of expression between different glycosaminoglycan moieties suggest differences in their functional roles during establishment of the primitive analogues of the skeleton.
机译:背景:斑马鱼是一种重要的发育模型。令人惊讶地,很少有研究描述骨骼形成过程中其细胞外基质的糖胺聚糖组成。蛋白聚糖上的糖胺聚糖有助于肌肉骨骼结缔组织的物质特性,并且在调节形态发生过程中的信号传导事件中很重要。细胞相关和细胞外基质蛋白聚糖上糖胺聚糖链结构内的硫酸化基序使它们能够结合并调节对骨骼肌发育至关重要的生物活性信号分子的螯合/呈递。结果:我们描述了斑马鱼骨骼生成过程中不同糖胺聚糖部分的时空表达,这些抗体识别(1)软骨素和硫酸角质素链中的天然硫酸化基序,以及(2)硫酸软骨素(即软骨素)链结构中的酶生新表位序列,0、4和6硫酸同工型)和硫酸乙酰肝素糖胺聚糖。我们表明,调查的所有糖胺聚糖部分都在幼虫斑马鱼的骨骼发育组织中表达。但是,在所研究的时期内,它们的时空表达模式发生了细微的变化,表明它们的表达在发育过程中受到紧密而动态的控制。结论:在不同糖胺聚糖部分之间的表达域中观察到的细微差异表明在骨架原始类似物建立过程中它们的功能作用不同。

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