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Supramolecular Chemistry And Self-assembly Special Feature: Inhibition of chymotrypsin through surface binding usingnanoparticle-based receptors

机译:超分子化学和自组装特征:使用表面结合抑制胰凝乳蛋白酶纳米粒子受体

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摘要

Efficient binding of biomacromolecular surfaces by synthetic systems requires the effective presentation of complementary elements over large surface areas. We demonstrate here the use of mixed monolayer protected gold clusters (MMPCs) as scaffolds for the binding and inhibition of chymotrypsin. In these studies anionically functionalized amphiphilic MMPCs were shown to inhibit chymotrypsin through a two-stage mechanism featuring fast reversible inhibition followed by a slower irreversible process. This interaction is very efficient, with a K = 10.4 ± 1.3 nM. The MMPC–protein complex was characterized by CD, demonstrating an almost complete denaturation of the enzyme over time. Dynamic light scattering studies confirm that inhibition proceeds without substantial MMPC aggregation. The electrostatic nature of the engineered interactions provides a level of selectivity: little or no inhibition of function was observed with elastase, β-galactosidase, or cellular retinoic acid binding protein.
机译:合成系统对生物大分子表面的有效结合要求在大表面积上有效呈现互补元素。我们在这里证明了混合的单层保护金簇(MMPCs)作为支架用于胰凝乳蛋白酶的结合和抑制。在这些研究中,阴离子功能化的两亲性MMPCs通过两步机制表现出抑制胰凝乳蛋白酶的作用,该机制具有快速可逆的抑制作用以及较慢的不可逆过程。这种相互作用非常有效,K = 10.4±1.3 nM。 MMPC-蛋白质复合物的特征在于CD,随着时间的推移证明该酶几乎完全变性。动态光散射研究证实,抑制在没有大量MMPC聚集的情况下进行。工程相互作用的静电性质提供了一定程度的选择性:使用弹性蛋白酶,β-半乳糖苷酶或细胞视黄酸结合蛋白观察到的功能很少或没有抑制。

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