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首页> 外文期刊>Bioscience Reports >Thermodynamic Analysis of Chitooligosaccharide Binding to Urtica dioica agglutinin by Isothermal Titration Calorimetry
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Thermodynamic Analysis of Chitooligosaccharide Binding to Urtica dioica agglutinin by Isothermal Titration Calorimetry

机译:等温滴定量热法测定壳寡糖与荨麻叶凝集素结合的热力学分析

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摘要

UDA (Urtica dioica agglutinin) contains two hevein like domains with two non-identical interacting sites and is specific for chitooligosaccharides. The binding of chitooligosaccharides to UDA was studied by Isothermal Titration Calorimetry. Each site is composed of three subsites, each binding to a sugar residue. Thermodynamic parameters obtained show that while chitobiose has two independent non-interacting sites, chitotriose, chitotetrose and chitopentose have two interacting sites on each monomer of UDA. Values of binding enthalpy (ΔH) increase almost by a factor of 7 in going from chitobiose to chitotriose indicating the existence of three subsites in the combining site of UDA. The binding constant for chitotetrose and chitopentose increase without any further enhancement in the values of ΔH indicating that for oligomers larger than chitotriose interaction is favoured entropically.
机译:UDA(Urtica dioica凝集素)包含两个具有两个不相同相互作用位点的类肝素结构域,并且对壳寡糖具有特异性。通过等温滴定热量法研究了壳寡糖与UDA的结合。每个位点由三个亚位点组成,每个亚位点均与糖残基结合。获得的热力学参数表明,虽然壳二糖具有两个独立的非相互作用位点,但是壳三糖,壳四糖和壳戊糖在UDA的每个单体上具有两个相互作用位点。从壳二糖变为壳三糖时,结合焓(ΔH)的值几乎增加了7倍,这表明UDA结合位点中存在三个亚位点。壳聚糖和壳聚糖的结合常数增加,而ΔH值没有任何进一步的提高,表明对于大于壳三糖相互作用的寡聚物,熵是有利的。

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