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A synthetic host-guest system achieves avidin-biotin affinity by overcoming enthalpy–entropy compensation

机译:合成的主客体系统通过克服焓-熵补偿来达到抗生物素蛋白-生物素的亲和力

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摘要

The molecular host cucurbit[7]uril forms an extremely stable inclusion complex with the dicationic ferrocene derivative bis(trimethylammoniomethyl)ferrocene in aqueous solution. The equilibrium association constant for this host-guest pair is 3 × 1015 M−1 (Kd = 3 × 10−16 M), equivalent to that exhibited by the avidin–biotin pair. Although purely synthetic systems with larger association constants have been reported, the present one is unique because it does not rely on polyvalency. Instead, it achieves its extreme affinity by overcoming the compensatory enthalpy–entropy relationship usually observed in supramolecular complexes. Its disproportionately low entropic cost is traced to extensive host desolvation and to the rigidity of both the host and the guest.
机译:分子主体葫芦[7]尿嘧啶与二价二茂铁衍生物双(三甲基氨甲基)二茂铁在水溶液中形成极其稳定的包合物。该主客体对的平衡缔合常数为3×1015 M-1(Kd = 3×10-16 M),与抗生物素蛋白-生物素对所表现出的平衡缔合常数相等。尽管已经报道了具有较大缔合常数的纯合成系统,但本系统是独特的,因为它不依赖于多价。相反,它通过克服通常在超分子复合物中观察到的代偿焓-熵关系来达到其极高的亲和力。它的熵成本极低,这可归因于广泛的宿主去溶剂化以及宿主和来宾的刚性。

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