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通过离子淌度质谱和理论计算探索葫芦[8]脲与芳香肽二聚体复合物的构象景观

Exploring the Conformational Landscape of Complexes with Cucurbit[8]uril and Aromatic Peptide Dimers by Ion Mobility Mass Spectrometry and Theoretical Calculations.

作者信息

Du Jianglong, Chu Yanqiu, Yan Yinghua, Li Zhenhua, Ding Chuan-Fan

机构信息

Department of Chemistry, Fudan University, Shanghai 200438, China.

Key Laboratory of Advanced Mass Spectrometry and Molecular Analysis of Zhejiang Province, Institute of Mass Spectrometry, School of Material Science and Chemical Engineering, Ningbo University, Ningbo, Zhejiang 315211, China.

出版信息

J Phys Chem A. 2025 Aug 21;129(33):7630-7640. doi: 10.1021/acs.jpca.5c03280. Epub 2025 Aug 11.

Abstract

Precise control of peptide dimerization holds profound implications for elucidating biological functions, advancing drug design, and engineering self-assembling materials. Significant progress has been achieved in cucurbit[8]uril (CB[8])-mediated dimerization of canonical aromatic peptides (XGG, X = F (Phe)/Y (Tyr)/W (Trp), G = Gly), and further conformational exploration is crucial for the determination of potential applications. In this work, we conduct gas-phase structural characterization of complexes with CB[8] and XGG dimers by ion mobility mass spectrometry (IM-MS) and theoretical calculations, with particular attention to the dependence of the conformational landscape and noncovalent interaction (NCI). IM-MS and MS experiments reveal the conformational diversity, dissociation pathways, and stability differences of the complexes of CB[8] and XGG homo/heterodimers. Theoretical calculations elucidate the topological morphologies and geometry details of complexes and categorize them into the , , and conformers based on the orientation of peptide chains at the CB[8] port. Visualization of NCIs and energy decomposition analysis (EDA) reveal the intriguing trends in intermolecular interactions and energy contribution terms across conformers of distinct morphologies. Our work provides insights for guiding the design of the supramolecular junction for specific control of the peptide spatial behavior.

摘要

精确控制肽二聚化对于阐明生物学功能、推进药物设计以及构建自组装材料具有深远意义。葫芦[8]脲(CB[8])介导的典型芳香族肽(XGG,X = F(苯丙氨酸)/Y(酪氨酸)/W(色氨酸),G = 甘氨酸)二聚化已取得显著进展,进一步的构象探索对于确定潜在应用至关重要。在这项工作中,我们通过离子淌度质谱(IM-MS)和理论计算对CB[8]与XGG二聚体的复合物进行气相结构表征,特别关注构象态势和非共价相互作用(NCI)的依赖性。IM-MS和MS实验揭示了CB[8]与XGG同型/异型二聚体复合物的构象多样性样多样性、解离途径和稳定性差异。理论计算阐明了复合物的拓扑形态和几何细节,并根据肽链在CB[8]端口处的取向将它们分类为、和构象异构体。NCI可视化和能量分解分析(EDA)揭示了不同形态构象异构体之间分子间相互作用和能量贡献项的有趣趋势。我们的工作为指导超分子连接体的设计提供了见解,以特定方式控制肽的空间行为。

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