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环糊精的边缘结合在大小敏感的客体识别中。

Rim Binding of Cyclodextrins in Size-Sensitive Guest Recognition.

机构信息

Department of Chemistry, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Am Chem Soc. 2021 Apr 21;143(15):5786-5792. doi: 10.1021/jacs.1c00651. Epub 2021 Apr 7.

Abstract

Cyclodextrins (CDs) are doughnut-shaped cyclic oligosaccharides having a cavity and two rims. Inclusion binding in the cavity has long served as a classic model of molecular recognition, and rim binding has been neglected. We found that CDs recognize guests by size-sensitive binding using the two rims in addition to the cavity, using single-molecule electron microscopy and a library of graphitic cones as a solid-state substrate for complexation. For example, with its cavity and rim binding ability combined, γ-CD can recognize a guest of radius between 4 and 9 Å with a size-recognition precision of better than 1 Å, as shown by structural analysis of thousands of individual specimens and statistical analysis of the data thereof. A 2.5 ms resolution electron microscopic video provided direct evidence of the process of size recognition. The data suggest the occurrence of the rim binding mode for guests larger than the size of the CD cavity and illustrate a unique application of dynamic molecular electron microscopy for deciphering the spatiotemporal details of supramolecular events.

摘要

环糊精(CDs)是具有空腔和两个边缘的环状低聚糖。空腔中的包合作用长期以来一直是分子识别的经典模型,而边缘结合则被忽视了。我们发现,通过使用单分子电子显微镜和石墨锥库作为固态配合物的基质,CD 可以通过两个边缘以及空腔来进行大小敏感的结合来识别客体。例如,γ-CD 可以结合其空腔和边缘结合能力,以大于 1 Å 的精度识别半径在 4 到 9 Å 之间的客体,这是通过对数千个单个样本的结构分析和对数据的统计分析得出的。分辨率为 2.5 ms 的电子显微镜视频提供了大小识别过程的直接证据。这些数据表明,对于大于 CD 空腔尺寸的客体,会发生边缘结合模式,并说明了动态分子电子显微镜在解析超分子事件的时空细节方面的独特应用。

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