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卤素相互作用对环二肽支架上跨层次手性自组装的影响。

Halogen Interaction Effects on Chiral Self-Assemblies on Cyclodipeptide Scaffolds Across Hierarchy.

作者信息

Wang Zhuoer, Hao Aiyou, Xing Pengyao

机构信息

Key Laboratory of Colloid and Interface Chemistry of Ministry of Education, School of Chemistry and Chemical Engineering, Shandong University, Jinan, 250100, P. R. China.

出版信息

Small. 2023 Aug;19(33):e2302517. doi: 10.1002/smll.202302517. Epub 2023 May 10.

Abstract

How halogenation affects protein or peptide folding and self-assembly hierarchically? This study tries to answer this question by using the halogen bonding mediated self-assemblies on cyclodipeptide scaffolds. Single-functionalized cyclodipeptides (Cyclo-GX) based on para-halogenated phenylalanine in the solid state form homochiral helical nanotubes via consecutive X···O bonds (X = Cl, Br, and I) independent of halogen kinds. In contrast, double-functionalized cyclodipeptides (Cyclo-XX) feature versatile self-assembly architectures depending on the para-substituents (X = H, F, Cl, Br, and I), affording nanotubular, lamellar, and triple helical nanotubular architectures. Cyclo-BrBr exclusively adopts intramolecular Type-IV X···X interaction that alters the molecular folding and packing, which also gives rise to opposite chirality at molecular folding (secondary structure), stacking (tertiary structure), and self-assembled nanohelices (quarternary structure) at macroscopic scale. It unveils how halogenation impacts on the self-assembly and chirality at hierarchical levels in specific peptides. Clusteroluminescence is found for the cyclodipeptides, achieving high quantum yield up to 71%, whereby circularly polarized luminescence is realized with tunable handedness by controlling halogen substituents.

摘要

卤化如何分级影响蛋白质或肽的折叠与自组装?本研究试图通过利用环二肽支架上的卤键介导自组装来回答这个问题。基于对卤代苯丙氨酸的单官能化环二肽(Cyclo-GX)在固态下通过连续的X···O键(X = Cl、Br和I)形成同手性螺旋纳米管,与卤素种类无关。相比之下,双官能化环二肽(Cyclo-XX)根据对位取代基(X = H、F、Cl、Br和I)具有多样的自组装结构,可形成纳米管状、层状和三螺旋纳米管状结构。Cyclo-BrBr仅采用分子内IV型X···X相互作用,这种相互作用改变了分子折叠和堆积,在宏观尺度上还导致分子折叠(二级结构)、堆积(三级结构)和自组装纳米螺旋(四级结构)处的手性相反。它揭示了卤化如何在特定肽的分级水平上影响自组装和手性。发现环二肽具有聚集发光特性,量子产率高达71%,通过控制卤素取代基可实现具有可调旋光性的圆偏振发光。

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