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首页> 外文期刊>Analytical chemistry >Structural Elucidation of Specific Noncovalent Association of Folic Acid with Native Cyclodextrins Using an Ion Mobility Mass Spectrometry and Theoretical Approach
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Structural Elucidation of Specific Noncovalent Association of Folic Acid with Native Cyclodextrins Using an Ion Mobility Mass Spectrometry and Theoretical Approach

机译:叶酸与天然环糊精的特定非共价缔合的结构解析,采用离子淌度质谱和理论方法

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The combination of ion mobility mass spectrometry studies and theoretical calculations including docking studies permitted a detailed structural description of non-covalent complexes of folic acid (FA) and native cyclodextrins (α-CD, β-CD, and γ-CD). The mode of noncovalent association depended on the cavity size of the cyclodextrin. The structure of FA/α-CD represented the exclusion complex in which the aminobenzoic moiety and the aromatic pteridine ring of folic acid remain outside the cyclodextrin cavity, while the glutamate residue is anchored in the interior of the α-cyclodextrin. A rotaxane-type structure was proposed for the FA/β-CD complex with the aminobenzoic part of FA being trapped in the central cavity of β-CD. The glutamate residue and the aromatic pteridine ring interact with the primary and secondary rim hydroxyl residues, respectively, enhancing complex stability. Two possible structures of FA/γ-CD were suggested, the first one being analogous to the FA/β-CD complex and the second one being more stable--in which the aromatic pteridine ring penetrates into the CD cavity while the glutamate residue with the aminobenzoic part of FA is exposed to the cone exterior of CD at its wider edge. Further insight into the association behavior of the folic acid toward cyclodextrins evaluated by thermodynamic calculations indicates that the process is highly exothermic. The complex stability increased in the order FA/α-CD < FA/β-CD < FA/γ-CD. This order is consistent with the previously determined relative gas-phase stability established based on the dissociation efficiency curves of the FA/CD complexes.
机译:离子迁移质谱研究与包括对接研究在内的理论计算相结合,可以对叶酸(FA)与天然环糊精(α-CD,β-CD和γ-CD)的非共价复合物进行详细的结构描述。非共价结合的方式取决于环糊精的空腔大小。 FA /α-CD的结构代表排阻复合物,其中叶酸的氨基苯甲酸酯部分和芳香族蝶啶环保留在环糊精腔外,而谷氨酸残基锚定在α-环糊精内部。提出了一种FA /β-CD复合物的轮烷型结构,其中FA的氨基苯甲酸部分被困在β-CD的中心腔中。谷氨酸残基和芳香族蝶啶环分别与伯和仲边缘羟基残基相互作用,从而增强复合物的稳定性。提出了FA /γ-CD的两种可能的结构,第一种类似于FA /β-CD复合物,第二种更稳定-其中芳族蝶啶环渗透到CD腔中,而谷氨酸残基带有FA的氨基苯甲酸部分在CD的锥形边缘更宽的边缘暴露。通过热力学计算对叶酸与环糊精的缔合行为的进一步了解表明该过程是高度放热的。络合物的稳定性按FA /α-CD

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