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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Thermodynamics of binding interactions between divalent copper and chitin fragments by isothermal titration calorimetry (ITC)
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Thermodynamics of binding interactions between divalent copper and chitin fragments by isothermal titration calorimetry (ITC)

机译:等温滴定量热法(ITC)的二价铜与几丁质片段之间结合相互作用的热力学

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Herein we report the degree of binding of chitin fragments to divalent copper cation using isothermal titration calorimetry (ITC). In a previous study we have reported the kinetic and thermodynamic binding constants for chitin polymer interactions with a range of metal cations including copper (Camci-Unal & Pohl, 2009). In order to better determine the molecular basis for metal binding to these carbohydrate polymers, a series of chitin fragments were tested for their ability to bind to divalent copper. Based on ITC data, the binding strength of N-acetyl-D-glucosamine (GlcNAc) is weakest among the tested substrates with a binding constant of 3.8 × 10~3 M~(-1). N,N'-diacetylchitobiose (GlcNAc)2 and N,N'N"-tria-cetylchitotriose (GlcNAc)3 provided binding constants of 5.1×10~3 M~(-1) and 13.3 × 10~3 M~(-1) respectively. Penta-N-acetylchitopentaose (GlcNAc)5 demonstrated the strongest metal interactions with a binding constant of 22.1 × 10~3 M~(-1). For comparison, a binding value of 24.8 × 10~3 M~(-1) was found for d-glucosamine, which is the deacetylated analog of GlcNAc, with the divalent copper. All experiments showed enthalpically driven interactions. Free energy of reaction values are all determined to be negative indicating spontaneous reactions. Our results indicate that increasing numbers of GlcNAc residues increase the binding strength towards divalent copper cation. However, the effect of adding sugars to the polymer chain only modestly increases the binding affinity, thereby ruling out any chelation multi-valency effects.
机译:在这里,我们报告了使用等温滴定热法(ITC)的几丁质片段与二价铜阳离子的结合程度。在先前的研究中,我们报道了几丁质聚合物与一系列金属阳离子(包括铜)相互作用的动力学和热力学结合常数(Camci-Unal&Pohl,2009)。为了更好地确定金属与这些碳水化合物聚合物结合的分子基础,测试了一系列几丁质片段与二价铜结合的能力。根据ITC数据,在测试的底物中,N-乙酰基-D-葡萄糖胺(GlcNAc)的结合强度最弱,结合常数为3.8×10〜3 M〜(-1)。 N,N'-二乙酰基壳二糖(GlcNAc)2和N,N'N“-三乙酰基壳三糖(GlcNAc)3提供的结合常数为5.1×10〜3 M〜(-1)和13.3×10〜3 M〜(- 1)。五-N-乙酰基壳聚糖五糖(GlcNAc)5表现出最强的金属相互作用,结合常数为22.1×10〜3 M〜(-1)。相比之下,结合值为24.8×10〜3 M〜( -1)被发现是d-葡糖胺,它是GlcNAc的脱乙酰基类似物,与二价铜。所有实验均显示出焓驱动的相互作用。反应自由能均被确定为负表明自发反应。我们的结果表明增加GlcNAc残基的数目增加了对二价铜阳离子的结合强度,但是,将糖添加到聚合物链中的作用仅适度地增加了结合亲和力,从而排除了任何螯合多价作用。

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