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Supramolecular domains in mixed peptide self-assembled monolayers on gold nanoparticles

机译:金纳米颗粒上混合肽自组装单层的超分子结构域

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Self-organization in mixed self-assembled monolayers of small molecules provides a route towards nano-particles with complex molecular structures. Inspired by a structural biology a strategy based on chemical cross linking is introduced to probe proximity between functional peptide embedded in a mixed self-assembled monolayer at the surface os a nanoparticle. The physical basis of the proximity measurement is a transition from intramolecular to intermolecular cross-linking as the functional peptides get closer. Experimental investigations for a binary peptide self-assembled monolayer show that this transition happens at an extremely low molar rate of the functional versus matrix peptide. Molecular dynamics simulations at the volume explored by the reactive groups. Comparison of the experimental results with a probabilistic model demonstrates that the peptides are not randomly distributed at the surface of the nanoparticle but rather self-organize into supramolecular domains.
机译:小分子的混合自组装单层中的自组织提供了通往具有复杂分子结构的纳米粒子的途径。受结构生物学的启发,引入了基于化学交联的策略,以探测嵌入在纳米颗粒表面的混合自组装单层膜中的功能肽之间的邻近性。邻近性测量的物理基础是随着功能性肽越来越接近,从分子内交联到分子间交联的过渡。对二元肽自组装单层的实验研究表明,这种转变发生在功能性肽与基质肽的极低摩尔比下。分子动力学模拟在反应基团探索的体积上。实验结果与概率模型的比较表明,肽不是随机分布在纳米颗粒的表面,而是自组织成超分子结构域。

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