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首页> 外文期刊>Angewandte Chemie >On the Role of Chirality in Guiding the Self-Assembly of Peptides
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On the Role of Chirality in Guiding the Self-Assembly of Peptides

机译:关于手性在引导肽自组装的作用

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Homochirality in peptides is crucial in sustaining "like-like" intermolecular interactions that allow the formation of assemblies and aggregates and is ultimately responsible for the resulting material properties. With the help of a series of stereoisomers of the tripeptide F-F-L, we demonstrate the critical role that peptide stereochemistry plays in the self-assembly of peptides, guided by molecular recognition, and for self-sorting. Homochiral self-assemblies are thermally and mechanically more robust compared to heterochiral self-assemblies. Morphological studies of the multicomponent peptide systems showed that aggregates formed from homochiral peptides possessed a uniform nano-fibrous structure, whereas heterochiral systems resulted in self-sorted systems with a heterogeneous morphology. In essence, homochiral peptides form the stronger aggregates, which may be one of reasons why homochirality is preferred in living systems.
机译:肽中的销售在持续的“类似”的分子间相互作用中是至关重要的,其允许形成组件和聚集体,并最终负责所得的材料性质。 借助三肽F-L的一系列立体异构体,我们证明了肽立体化学在肽的自组装中起作用的关键作用,以分子识别为引导,以及用于自分类。 与异单元自组装相比,HomoChiral自组装是热和机械更鲁棒的。 多组分肽系统的形态学研究表明,由冠制肽形成的聚集体具有均匀的纳米纤维结构,而异质血管系统导致具有异质形态的自分拣体系。 从本质上讲,Homochiral肽形成较强的聚集体,这可能是为什么在生活系统中优选的批次素是原因之一。

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