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首页> 外文期刊>Chemistry: A European journal >Recognition of Free Tryptophan in Water by Synthetic Pseudopeptides: Fluorescence and Thermodynamic Studies
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Recognition of Free Tryptophan in Water by Synthetic Pseudopeptides: Fluorescence and Thermodynamic Studies

机译:合成假肽对水中游离色氨酸的识别:荧光和热力学研究

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Pseudopeptidic receptors containing an acridine unit have been prepared and their fluorescence response to a series of amino acids was measured in water. Free amino acids, not protected either at the C or the N terminus, were used for this purpose. The prepared receptors display a selective response to tryptophan (Trp) versus the other assayed amino acids under acidic conditions. The macrocyclic nature of the receptor is important as the fluorescence quenching is higher for the macrocyclic compound than for the related open-chain receptor. Notably, under the experimental acidic conditions used, both the receptor and guest are fully protonated and positively charged; thus, the experimental results suggest the formation of supramolecular species that contain two positively charged organic molecular components in proximity stabilized through aromatic–aromatic interactions and a complex set of cation-anion-cation interactions. The selectivity towards Trp seems to be based on the existence of a strong association between the indole ring of the monocharged amino acid and the acridinium fragment of the triprotonated form of the receptor, which is established to be assisted by the interaction of the cationic moieties with hydrogen sulfate anions.
机译:已经制备了含有an啶单元的伪肽受体,并在水中测量了它们对一系列氨基酸的荧光响应。为此目的,在C或N末端均未保护的游离氨基酸。相对于其他测定的氨基酸,在酸性条件下,制备的受体对色氨酸(Trp)表现出选择性反应。受体的大环性质很重要,因为大环化合物的荧光猝灭性高于相关的开链受体。值得注意的是,在所用的实验酸性条件下,受体和客体均被完全质子化并带正电;因此,实验结果表明,超分子物质的形成包含两个带正电的有机分子成分,它们通过芳香族-芳香族相互作用和一组复杂的阳离子-阴离子-阳离子相互作用而稳定化。对Trp的选择性似乎是基于单电荷氨基酸的吲哚环与受体三重化形式的cri啶鎓片段之间的牢固联系,该联系的建立是由于阳离子部分与硫酸氢根阴离子。

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