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Design, Synthesis, and Application of a Library of Supramolecular Structures Formed by N-Lipidated Peptides Immobilized on Cellulose. Artificial Receptors

机译:由固定在纤维素上的N脂化肽形成的超分子结构文库的设计,合成和应用。人工受体

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An array of supramolecular structures formed from N-lipidated peptides attached to cellulose via aminophenylamino-1,3,5-triazine was synthesized. The structures thus prepared were prone to self-organization and to formation of monolayer of "holes" and "pockets" in dynamic equilibrium, structures which were capable of binding small guest molecules very efficiently recognizing the shape, size, and polarity of ligands, thus resembling artificial receptors. Because of the high flexibility of N-lipidated peptides, it is expected that the host adjusts its shape to wrap guest molecules most efficiently. The selectivity and rate of binding was studied by using triphenylmethyl dyes. It was found that the selectivity of binding depends on the structure of the peptide and the N-lipidic fragment of the receptor and varies with the structure of the analyte. Even tiny structural changes in guest molecules were detected by monitoring the alteration of the binding pattern.
机译:合成了由通过氨基苯基氨基-1,3,5-三嗪与纤维素连接的N-脂化肽形成的超分子结构的阵列。如此制备的结构易于自组织并且在动态平衡中易于形成“孔”和“口袋”的单层,这些结构能够非常有效地结合小客体分子,从而识别配体的形状,大小和极性,因此类似人工受体。由于N-脂化肽的高度柔韧性,可以预期宿主会调整其形状以最有效地包裹客体分子。通过使用三苯基甲基染料研究了结合的选择性和结合速率。发现结合的选择性取决于肽的结构和受体的N-脂质片段,并随分析物的结构而变化。通过监测结合模式的改变,甚至检测到客体分子的微小结构变化。

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