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In vivo manipulation of heparan sulfate structure and its effect on Drosophila development

机译:硫酸乙酰肝素结构的体内操纵及其对果蝇发育的影响

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摘要

Heparan sulfate proteoglycans (HSPGs) participate in a wide range of biological processes through interactions with a number of ligand proteins. The nature of these interactions largely depends on the heparan sulfate (HS) moiety of HSPGs, which undergoes a series of modifications by various HS-modifying enzymes (HSMEs). Although the effects of alterations in a single HSME on physiological processes have started to be studied, it remains elusive how a combination of these molecules control the structure and function of HS. Here we systematically manipulated the HS structures and analyzed their effect on morphogenesis and signaling, using the genetically tractable model organism, Drosophila. We generated transgenic fly strains overexpressing HSMEs alone or in combination. Unsaturated disaccharide analyses of HS showed that expression of various HSMEs generates distinct HS structures, and the enzymatic activities of HSMEs are influenced by coexpression of other HSMEs. Furthermore, these transgenic HSME animals showed a different extent of lethality, and a subset of HSMEs caused specific morphological defects due to defective activities of Wnt and bone morphogenetic protein signaling. There is no obvious relationship between HS unsaturated disaccharide composition and developmental defects in HSME animals, suggesting that other structural factors, such as domain organization or sulfation sequence, might regulate the function of HS.
机译:硫酸乙酰肝素蛋白聚糖(HSPG)通过与许多配体蛋白相互作用来参与广泛的生物过程。这些相互作用的性质很大程度上取决于HSPG的硫酸乙酰肝素(HS)部分,该部分会通过各种HS修饰酶(HSME)进行一系列修饰。尽管已经开始研究单个HSME的改变对生理过程的影响,但如何结合这些分子如何控制HS的结构和功能仍然难以捉摸。在这里,我们系统地操纵了HS结构,并使用可遗传遗传的模型生物果蝇(Drosophila)分析了它们对形态发生和信号传导的影响。我们产生了单独或组合过量表达HSME的转基因蝇品系。 HS的不饱和二糖分析表明,各种HSME的表达会产生不同的HS结构,而HSME的酶活性受其他HSME共同表达的影响。此外,这些转基因的HSME动物显示出不同程度的致死性,并且由于Wnt的活性缺陷和骨形态发生蛋白信号传导,一部分HSME引起了特定的形态缺陷。 HS不饱和二糖的组成与HSME动物的发育缺陷之间没有明显的关系,这表明其他结构性因素(例如域组织或硫酸化序列)可能会调节HS的功能。

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