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Assembly of polypeptide-functionalized gold nanoparticles through a heteroassociation- and folding-dependent bridging

机译:多肽功能化的金纳米粒子通过异缔合和折叠依赖性桥接的组装。

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摘要

Gold nanoparticles were functionalized with a synthetic polypeptide, de novo-designed to associate with a charge complementary linker polypeptide in a folding-dependent manner. A heterotrimeric complex that folds into two disulphide-linked four-helix bundles is formed when the linker polypeptide associates with two of the immobilized peptides. The heterotrimer forms in between separate particles and induces a rapid and extensive aggregation with a well-defined interpartide spacing. The aggregated particles are redispersed when the disulphide bridge in the linker polypeptide is reduced.
机译:金纳米颗粒用合成多肽功能化,从头开始设计为以依赖折叠的方式与电荷互补接头多肽缔合。当接头多肽与两个固定的肽缔合时,会形成折叠成两个二硫键连接的四螺旋束的异三聚体复合物。异三聚体在分离的颗粒之间形成,并引起快速且广泛的聚集,并具有明确的粒子间距。当接头多肽中的二硫键还原时,聚集的颗粒重新分散。

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