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首页> 外文期刊>Chemistry: A European journal >Chondroitin Sulfate Tetrasaccharides: Synthesis, Three-Dimensional Structure and Interaction with Midkine
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Chondroitin Sulfate Tetrasaccharides: Synthesis, Three-Dimensional Structure and Interaction with Midkine

机译:硫酸软骨素四糖:合成,三维结构和与midkine的相互作用。

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The biological activity of midkine, a cytokine implicated in neuro- and tumourigenesis, is regulated by its binding to glycosaminoglycans (GAGs), such as heparin and chondroitin sulfate (CS). To better understand the molecular recognition of GAG sequences by this growth factor, the interactions between synthetic chondroitin sulfate-like tetrasaccharides and midkine were studied by using different techniques. Firstly, a synthetic approach for the preparation of CS-like oligosaccharides in the sequence GalNAc-GlcA was developed. A fluorescence polarisation competition assay was then employed to analyse the relative binding affinities of the synthetic compounds and revealed that midkine interacted with CS-like tetrasaccharides in the micromolar range. The 3D structure of these tetramers was studied in detail by a combination of NMR spectroscopy experiments and molecular dynamics simulations. Saturation transfer difference (STD) NMR spectroscopy experiments indicate that the CS tetrasaccharides bind to midkine in an extended conformation, with similar saturation effects along the entire sugar chain. These results are compatible with docking studies that suggest an interaction of the tetrasaccharide with midkine in a folded structure. Overall, this study provides valuable information on the interaction between midkine and well-defined, chemically synthesised CS oligosaccharides and these data can be useful for the design of more active compounds that modulate the biological function of this protein.
机译:Midkine是一种涉及神经和肿瘤发生的细胞因子,其生物活性受其与糖胺聚糖(GAG)(例如肝素和硫酸软骨素)(CS)的结合的调节。为了更好地理解该生长因子对GAG序列的分子识别,通过使用不同的技术研究了合成的硫酸软骨素样四糖和midkine之间的相互作用。首先,开发了一种制备序列为GalNAc-GlcA的CS样寡糖的合成方法。然后采用荧光偏振竞争分析法分析了合成化合物的相对结合亲和力,发现中因子与微摩尔范围内的CS样四糖相互作用。通过结合NMR光谱实验和分子动力学模拟,详细研究了这些四聚体的3D结构。饱和转移差异(STD)NMR光谱实验表明,CS四糖以扩展的构象结合中期因子,在整个糖链上具有相似的饱和效应。这些结果与对接研究相符,对接研究表明四糖与中期因子在折叠结构中相互作用。总的来说,这项研究提供了有关中期因子与明确定义的化学合成CS寡糖之间相互作用的有价值的信息,这些数据可用于设计调节该蛋白质生物学功能的更具活性的化合物。

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