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首页> 外文期刊>Chemistry: A European journal >Multivalency by Self-Assembly: Binding of Concanavalin A to Metallosupramolecular Architectures Decorated with Multiple Carbohydrate Groups
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Multivalency by Self-Assembly: Binding of Concanavalin A to Metallosupramolecular Architectures Decorated with Multiple Carbohydrate Groups

机译:通过自组装实现多价:刀豆鱼素 A 与装饰有多个碳水化合物基团的金属超分子结构的结合

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Multiplication of functional units through self-assembly is a powerful way to new properties and functions. In particular, self-organization of components decorated with recognition groups leads to multivalent entities, amenable to strong and selective binding with multivalent targets, such as protein receptors. Here we describe an efficient, supramolecular, one-pot valency multiplication process proceeding through self-organization of monovalent components into well-defined, grid-shaped 2×2 tetranuclear complexes bearing eight sugar residues for multivalent interaction with the tetrameric lectin, concanavalin A (Con A). The grids are stable in water under physiological pH at a relatively high concentration, but dissociate readily at slightly more acidic pH or upon dilution below a certain threshold, in a type of on–off behavior. The carbohydrate-decorated grids interact strongly and selectively with Con A forming triply supramolecular bio-hybrid polymeric networks, which lead to a highly specific phase-separation and quasi-quantitative precipitation of Con A out of solution. Dramatic effects of valency number on agglutination properties were demonstrated by comparison of grids with divalent carbohydrates of covalent and non-covalent (L-shaped, mononuclear zinc complex) scaffolds. The results presented here provide prototypical illustration of the power of multivalency generation by self-assembly leading to defined arrays of functional groups and binding patterns.
机译:通过自组装来增加功能单元是实现新属性和功能的有力方法。特别是,用识别基团装饰的组分的自组织导致多价实体,适合与多价靶标(如蛋白质受体)进行强和选择性结合。在这里,我们描述了一种高效的、超分子的、一锅价倍增过程,该过程通过将单价组分自组织成定义明确的网格状 [2×2] 四核复合物,该复合物带有八个糖残基,用于与四聚体凝集素刀豆球蛋白 A (Con A) 的多价相互作用。在相对较高浓度的生理pH值下,网格在水中是稳定的,但在酸性稍高的pH值下或稀释到一定阈值以下时很容易解离,这是一种开关行为。碳水化合物修饰的网格与Con A强烈而选择性地相互作用,形成三重超分子生物杂化聚合物网络,导致Con A从溶液中高度特异性的相分离和准定量沉淀。通过将网格与共价和非共价(L形,单核锌复合物)支架的二价碳水化合物进行比较,证明了价数对凝集特性的显着影响。这里给出的结果提供了通过自组装产生多价的能力的典型例证,从而导致定义的官能团和结合模式阵列。

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