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主体尺寸对环糊精与多金属氧酸盐主客体配合物中结合作用的影响。

The effect of host size on binding in host-guest complexes of cyclodextrins and polyoxometalates.

作者信息

Su Pei, Zhu Xiao, Wilson Solita M, Feng Yuanning, Samayoa-Oviedo Hugo Y, Sonnendecker Christian, Smith Andrew J, Zimmermann Wolfgang, Laskin Julia

机构信息

Department of Chemistry, Purdue University 560 Oval Drive West Lafayette Indiana 47907 USA

Department of Chemistry, Northwestern University 2145 Sheridan Road Evanston Illinois 60208 USA

出版信息

Chem Sci. 2024 Jun 19;15(30):11825-11836. doi: 10.1039/d4sc01061b. eCollection 2024 Jul 31.

Abstract

Harnessing flexible host cavities opens opportunities for the design of novel supramolecular architectures that accommodate nanosized guests. This research examines unprecedented gas-phase structures of Keggin-type polyoxometalate PWO (WPOM) and cyclodextrins (X-CD, X = α, β, γ, δ, ε, ζ) including previously unexplored large, flexible CDs. Using ion mobility spectrometry coupled to mass spectrometry (IM-MS) in conjunction with molecular dynamics (MD) simulations, we provide first insights into the binding modes between WPOM and larger CD hosts as isolated structures. Notably, γ-CD forms two distinct structures with WPOM through binding to its primary and secondary faces. We also demonstrate that ε-CD forms a deep inclusion complex, which encapsulates WPOM within its annular inner cavity. In contrast, ζ-CD adopts a saddle-like conformation in its complex with WPOM, which resembles its free form in solution. More intriguingly, the gas-phase CD-WPOM structures are highly correlated with their counterparts in solution as characterized by nuclear magnetic resonance (NMR) spectroscopy. The strong correlation between the gas- and solution phase structures of CD-WPOM complexes highlight the power of gas-phase IM-MS for the structural characterization of supramolecular complexes with nanosized guests, which may be difficult to examine using conventional approaches.

摘要

利用灵活的主体空腔为设计容纳纳米级客体的新型超分子结构开辟了机会。本研究考察了Keggin型多金属氧酸盐PWO(WPOM)与环糊精(X-CD,X = α、β、γ、δ、ε、ζ)前所未有的气相结构,包括此前未探索过的大型柔性环糊精。结合分子动力学(MD)模拟,使用离子淌度光谱-质谱联用(IM-MS),我们首次深入了解了WPOM与较大的环糊精主体之间作为孤立结构的结合模式。值得注意的是,γ-CD通过与WPOM的主面和次面结合形成了两种不同的结构。我们还证明,ε-CD形成了一种深度包合物,将WPOM封装在其环形内腔中。相比之下,ζ-CD在与WPOM形成的复合物中呈现鞍状构象,这与它在溶液中的自由形式相似。更有趣的是,气相中的环糊精-WPOM结构与其在溶液中的对应物高度相关,这通过核磁共振(NMR)光谱表征。环糊精-WPOM复合物的气相和溶液相结构之间的强相关性突出了气相IM-MS在表征含有纳米级客体的超分子复合物结构方面的作用,而使用传统方法可能难以对其进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/033f/11290418/20ca32e5ffd8/d4sc01061b-f1.jpg

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