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从独特的金属肽到自组装的超分子结构。

From Distinct Metallopeptoids to Self-Assembled Supramolecular Architectures.

机构信息

Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, Technion City, Haifa, 3200008, Israel.

出版信息

Chemistry. 2021 Jan 7;27(2):634-640. doi: 10.1002/chem.202003612. Epub 2020 Dec 1.

DOI:10.1002/chem.202003612
PMID:32853428
Abstract

The construction of synthetic protein mimics is a central goal in chemistry. A known approach for achieving this goal is the self-assembly of synthetic biomimetic sequences into supramolecular structures. Obtaining different 3D structures via a simple sequence modification, however, is still challenging. Herein we present the design and synthesis of biomimetic architectures, via the self-assembly of distinct copper-peptoid duplexes. We demonstrate that changing only one non-coordinating side-chain within the peptoids-sequence-specific N-substituted glycine oligomers-leads to different supramolecular structures. Four peptoid trimers incorporating 2,2'-bipyridine and pyridine ligands, and a non-coordinating but rather a structure-directed bulky group were synthesized, and their solutions were treated with Cu in a 1:1 ratio. Single-crystal X-ray analysis of the products revealed the self-assembly of each peptoid into a metallopeptoid duplex, followed by the self-assembly of multiple duplexes and their packing into a three-dimensional supramolecular architecture via hydrogen bonding and π-π interactions. Tuning the non-coordinating side-chain enables to regulate both the final structure being either a tightly packed helical rod or a nano-channel, and the pore width of the nano-channels. Importantly, all the metallopeptoids structures are stable in aqueous solution as verified by cryo-TEM measurements and supported by UV/Vis and EPR spectroscopies and by ESI-MS analysis. Thus, we could also demonstrate the selective recognition abilities of the nano-channels towards glycerol.

摘要

人工合成蛋白模拟物的构建是化学领域的一个核心目标。实现这一目标的一种已知方法是将合成的仿生序列自组装成超分子结构。然而,通过简单的序列修饰获得不同的 3D 结构仍然具有挑战性。在此,我们通过不同的铜-肽核酸二聚体的自组装来设计和合成仿生结构。我们证明,仅改变肽核酸序列特异性 N-取代甘氨酸寡聚物中的一个非配位侧链,就可以得到不同的超分子结构。我们合成了四个包含 2,2'-联吡啶和吡啶配体的肽核酸三聚体,以及一个非配位但具有结构导向性的大体积基团,并将它们的溶液与 Cu 以 1:1 的比例进行处理。产物的单晶 X 射线分析表明,每个肽核酸都自组装成一个金属肽核酸二聚体,然后通过氢键和 π-π 相互作用,多个二聚体自组装并包装成三维超分子结构。调节非配位侧链可以调节最终结构是紧密堆积的螺旋棒还是纳米通道,以及纳米通道的孔径。重要的是,所有的金属肽核酸结构在水溶液中都是稳定的,这一点通过低温透射电子显微镜测量得到了验证,并得到了紫外/可见和电子顺磁共振光谱以及电喷雾质谱分析的支持。因此,我们还证明了纳米通道对甘油的选择性识别能力。

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Chemistry. 2021 Jan 7;27(2):634-640. doi: 10.1002/chem.202003612. Epub 2020 Dec 1.
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